Open Access. Powered by Scholars. Published by Universities.®

Electrical and Computer Engineering Commons

Open Access. Powered by Scholars. Published by Universities.®

Boise State University

Discipline
Keyword
Publication Year
Publication
Publication Type

Articles 211 - 240 of 366

Full-Text Articles in Electrical and Computer Engineering

A Reference System For Animal Biometrics: Application To The Northern Leopard Frog, D. Petrovska-Delacrétaz, A. Edwards, J. Chiasson, G. Chollet, D. Pilliod Mar 2014

A Reference System For Animal Biometrics: Application To The Northern Leopard Frog, D. Petrovska-Delacrétaz, A. Edwards, J. Chiasson, G. Chollet, D. Pilliod

Electrical and Computer Engineering Faculty Publications and Presentations

Reference systems and public databases are available for human biometrics, but to our knowledge nothing is available for animal biometrics. This is surprising because animals are not required to give their agreement to be in a database. This paper proposes a reference system and database for the northern leopard frog (Lithobates pipiens). Both are available for reproducible experiments. Results of both open set and closed set experiments are given.


A 1 Gs/S, 31 Mhz Bw, 76.3 Db Dynamic Range, 34 Mw Ct-Δς Adc With 1.5 Cycle Quantizer Delay And Improved Stf, Sakkarapani Balagopal, Kehan Zhu, Vishal Saxena Feb 2014

A 1 Gs/S, 31 Mhz Bw, 76.3 Db Dynamic Range, 34 Mw Ct-Δς Adc With 1.5 Cycle Quantizer Delay And Improved Stf, Sakkarapani Balagopal, Kehan Zhu, Vishal Saxena

Electrical and Computer Engineering Faculty Publications and Presentations

A 1 GS/s continuous-time delta-sigma modulator (CT- ΔΣM) with 31 MHz bandwidth, 76.3 dB dynamic range and 72.5 dB peak-SNDR is reported in a 0.13 μm CMOS technology. The design employs an excess loop delay (ELD) of more than one clock cycle for achieving higher sampling rate. The ELD is compensated using a fast-loop formed around the last integrator by using a sample-and-hold. Further, the effect of this ELD compensation scheme on the signal transfer function (STF) of a feedforward CT- ΔΣ architecture has been analyzed and reported. In this work, an improved STF is achieved by using a combination …


Rt-Dsp Using ”See Through”, Cameron H. G. Wright, Thad B. Welch, Michael G. Morrow Jan 2014

Rt-Dsp Using ”See Through”, Cameron H. G. Wright, Thad B. Welch, Michael G. Morrow

Electrical and Computer Engineering Faculty Publications and Presentations

Engineering educators teaching digital signal processing (DSP) have found that using hands-on exercises for students can smooth the transition from theory to practical real-time DSP. However, before significant learning can begin using such exercises, students must build their confidence in the hardware and software platforms. When using audio signals, a “talk-through” project accomplishes this. For introducing more complicated signals such as video, the authors propose the use of a “see-through” project. This paper provides a description of a see-through project on a high-performance real-time DSP platform, discusses how such a project can lead to better follow-on learning using more advanced …


A Low-Cost Wireless Portable Particulate Matter Monitoring System, Sin Ming Loo, James A. Hall, Joshua Kiepert, Michael Pook, Nicholas Terrell Jan 2014

A Low-Cost Wireless Portable Particulate Matter Monitoring System, Sin Ming Loo, James A. Hall, Joshua Kiepert, Michael Pook, Nicholas Terrell

Electrical and Computer Engineering Faculty Publications and Presentations

This paper describes a portable sensor system design for environmental research. The designed system has been deployed in many environments and has been EMI/EMC approved for operation in commercial aircraft cabins. The sensor suite includes particulate matter, CO, CO2, temperature, humidity, pressure, light intensity, and sound sensors. Multiple sensor systems can be deployed at once to form a wireless sensor network. Each sensor node is powered either with six AA batteries or via a transformer and standard outlet. The data collected by a node can be stored locally on the device and/or sent through the integrated ZigBee mesh network to …


Timing And Carrier Synchronization With Channel Estimation In Af Two-Way Relaying Networks, Ali A. Nasir, Hani Mehrpouyan, Salman Durrani, Steven D. Bolstein, Rodney A. Kennedy Jan 2014

Timing And Carrier Synchronization With Channel Estimation In Af Two-Way Relaying Networks, Ali A. Nasir, Hani Mehrpouyan, Salman Durrani, Steven D. Bolstein, Rodney A. Kennedy

Electrical and Computer Engineering Faculty Publications and Presentations

Two-way relaying networks (TWRNs) allow for more bandwidth efficient use of the available spectrum since they allow for simultaneous information exchange between two users with the assistance of an intermediate relay node. However, due to superposition of signals at the relay node, the received signal at the user terminals is affected by multiple impairments, i.e., channel gains, timing offsets, and carrier frequency offsets, that need to be jointly estimated and compensated. This paper presents the system model for amplify-and-forward (AF) TWRNs in the presence of multiple impairments and proposes least squares and differential evolution based algorithms for joint estimation …


Simulation Of Electron Hop Funnels Using Version 9.2 Of Lorentz-2e, Tyler Rowe, Marcus Pearlman, Jim Browning Jan 2014

Simulation Of Electron Hop Funnels Using Version 9.2 Of Lorentz-2e, Tyler Rowe, Marcus Pearlman, Jim Browning

Electrical and Computer Engineering Faculty Publications and Presentations

Electron hop funnels have been simulated using the new version of the particle trajectory simulation software, Lorentz-2E. Simulations were conducted to determine the validity of the version 9.2 results and the consistency of the results to a previous version of the software, version 8.0. In addition, a new method of injecting a uniform current with all rays of equal charge is discussed, and the results of the method are presented. Version 9.2 of the software was successfully implemented and a new emission model tested. The transition of the software version will allow for faster simulation times of the electron hop …


Chiral Plasmonic Dna Nanostructures With Switchable Circular Dichroism, Ngoc Luong, Bernard Yurke, Wan Kuang Dec 2013

Chiral Plasmonic Dna Nanostructures With Switchable Circular Dichroism, Ngoc Luong, Bernard Yurke, Wan Kuang

Electrical and Computer Engineering Faculty Publications and Presentations

Circular dichroism spectra of naturally occurring molecules and also of synthetic chiral arrangements of plasmonic particles often exhibit characteristic bisignate shapes. Such spectra consist of peaks next to dips (or vice versa) and result from the superposition of signals originating from many individual chiral objects oriented randomly in solution. Here we show that by first aligning and then toggling the orientation of DNA-origami-scaffolded nanoparticle helices attached to a substrate, we are able to reversibly switch the optical response between two distinct circular dichroism spectra corresponding to either perpendicular or parallel helix orientation with respect to the light beam. The observed …


On The Biophysics And Kinetics Of Toehold-Mediated Dna Strand Displacement, Bernard Yurke Dec 2013

On The Biophysics And Kinetics Of Toehold-Mediated Dna Strand Displacement, Bernard Yurke

Electrical and Computer Engineering Faculty Publications and Presentations

Dynamic DNA nanotechnology often uses toehold-mediated strand displacement for controlling reaction kinetics. Although the dependence of strand displacement kinetics on toehold length has been experimentally characterized and phenomenologically modeled, detailed biophysical understanding has remained elusive. Here, we study strand displacement at multiple levels of detail, using an intuitive model of a random walk on a 1D energy landscape, a secondary structure kinetics model with single base-pair steps and a coarse-grained molecular model that incorporates 3D geometric and steric effects. Further, we experimentally investigate the thermodynamics of three-way branch migration. Two factors explain the dependence of strand displacement kinetics on toehold …


Analysis Of A Miniature Radio Frequency Ion Thruster With An Inductively Coupled Plasma Source, Peter Paul Bumbarger Dec 2013

Analysis Of A Miniature Radio Frequency Ion Thruster With An Inductively Coupled Plasma Source, Peter Paul Bumbarger

Boise State University Theses and Dissertations

The performance of a 2 cm miniature ion thruster was analyzed. A thruster of this size was predicted to produce a thrust of 200 μN. The plasma density was measured against rf input power and propellant flow rate for three configurations: the ICP source by itself; the ICP source with discharge chamber; and finally, the ICP source, the discharge chamber, and the permanent magnet cusp system. Once the optimum case was determined, electrostatic grids were added and thrust measurements were taken with a set of segmented ion collector plates.

The miniature rf ion thruster obtained a thrust of 22.35 μN …


Multiscaffold Dna Origami Nanoparticle Waveguides, William P. Klein, Charles N. Schmidt, Blake Rapp, Sadao Takabayashi, William B. Knowlton, Jeunghoon Lee, Bernard Yurke, William L. Hughes, Elton Graugnard, Wan Kuang Aug 2013

Multiscaffold Dna Origami Nanoparticle Waveguides, William P. Klein, Charles N. Schmidt, Blake Rapp, Sadao Takabayashi, William B. Knowlton, Jeunghoon Lee, Bernard Yurke, William L. Hughes, Elton Graugnard, Wan Kuang

Electrical and Computer Engineering Faculty Publications and Presentations

DNA origami templated self-assembly has shown its potential in creating rationally designed nanophotonic devices in a parallel and repeatable manner. In this investigation, we employ a multiscaffold DNA origami approach to fabricate linear waveguides of 10 nm diameter gold nanoparticles. This approach provides independent control over nanoparticle separation and spatial arrangement. The waveguides were characterized using atomic force microscopy and far-field polarization spectroscopy. This work provides a path toward large-scale plasmonic circuitry.


Monitoring Aircraft Cabin Particulate Matter Using A Wireless Sensor Network, James A. Hall Jr., Joshua Kiepert, Michael Pook, Sin Ming Loo Jul 2013

Monitoring Aircraft Cabin Particulate Matter Using A Wireless Sensor Network, James A. Hall Jr., Joshua Kiepert, Michael Pook, Sin Ming Loo

Electrical and Computer Engineering Faculty Publications and Presentations

The semi-enclosed and pressurized nature of the aircraft cabin results in a highly dynamic environment. The dynamic conditions establish spatiotemporal dependent environmental characteristics. Characterization of aircraft cabin environmental and bleed-air conditions have traditionally been done with stand-alone measurement systems which, by their very nature, cannot provide the necessary sensor coverage in such an environment. To this purpose, a prototype wireless sensor network system has been developed that can be deployed in the aircraft cabin environment. Each sensor node in the system incorporates the ability to measure common aircraft contaminants such as particulate matter and carbon dioxide, along with other key …


Hysteresis In Experimental I–V Curves Of Electron Hop Funnels, Tyler Rowe, Marcus Pearlman, Jim Browning Jul 2013

Hysteresis In Experimental I–V Curves Of Electron Hop Funnels, Tyler Rowe, Marcus Pearlman, Jim Browning

Electrical and Computer Engineering Faculty Publications and Presentations

Electron hop funnels provide a method to integrate field emission arrays into microwave vacuum electron devices, to protect the arrays, and to provide a method to study the secondary electron characteristics of dielectrics. A hop funnel is a dielectric material with an electrode, known as the hop electrode, placed around the narrow end (exit) of the funnel to control the current transmitted through the device. Current is transmitted through the funnel via electron-hopping transport. This work investigates a hysteresis observed in the current–voltage characteristic of the device. The experimental results showing the observed hysteresis will be presented. This work will …


Reconfigurable Threshold Logic Gates Using Memristive Devices, Adrian Rothenbuhler, Thanh Tran, Elisa H. Barney Smith, Vishal Saxena, Kristy A. Campbell Jun 2013

Reconfigurable Threshold Logic Gates Using Memristive Devices, Adrian Rothenbuhler, Thanh Tran, Elisa H. Barney Smith, Vishal Saxena, Kristy A. Campbell

Electrical and Computer Engineering Faculty Publications and Presentations

We present our design exploration of reconfigurable Threshold Logic Gates (TLG) implemented using silver–chalcogenide memristive devices combined with CMOS circuits. Results from simulations and physical circuits are shown. A variety of linearly separable logic functions including AND, OR, NAND, NOR have been realized in discrete hardware using a single-layer TLG. The functionality can be changed between these operations by reprogramming the resistance of the memristive devices.


A Memristor-Based Neuromorphic Computing Application, Adrian Rothenbuhler May 2013

A Memristor-Based Neuromorphic Computing Application, Adrian Rothenbuhler

Boise State University Theses and Dissertations

Artificial neural networks have recently received renewed interest because of the discovery of the memristor. The memristor is the fourth basic circuit element, hypothesized to exist by Leon Chua in 1971 and physically realized in 2008. The two-terminal device acts like a resistor with memory and is therefore of great interest for use as a synapse in hardware ANNs. Recent advances in memristor technology allowed these devices to migrate from the experimental stage to the application stage.

This Master's thesis presents the development of a threshold logic gate (TLG), which is a special case of an ANN, implemented with discrete …


Systematic Design Of 10-Bit 50ms/S Pipelined Adc, Kehan Zhu, Sakkarapani Balagopal, Vishal Saxena Apr 2013

Systematic Design Of 10-Bit 50ms/S Pipelined Adc, Kehan Zhu, Sakkarapani Balagopal, Vishal Saxena

Electrical and Computer Engineering Faculty Publications and Presentations

A systematical design analysis of a 10-bit 50MS/s pipelined ADC is presented. With an opamp-sharing technique, the power consumption is reduced drastically. Simulated in a 130-nm CMOS process, it achieves a 58.9dB signal-to-noise ratio (SNR), a 9.3 effective number of bits (ENOB), 64dB spurious free dynamic range (SFDR) with a sinusoid input of 4.858-MHz 1-Vpp at 50MS/s, and consumes less than 24 mW from a 1.2-V supply.


Pecvd Of GeXS1−X Films For Nano-Ionic Redox Conductive Bridge Memristive Switch Memory, Muhammad Rizwan Latif, Maria Mitkova, Gary Tompa, Elane Coleman Apr 2013

Pecvd Of GeXS1−X Films For Nano-Ionic Redox Conductive Bridge Memristive Switch Memory, Muhammad Rizwan Latif, Maria Mitkova, Gary Tompa, Elane Coleman

Electrical and Computer Engineering Faculty Publications and Presentations

This study is related to fabrication and characterization of redox conductive bridge memristors (RCBM). An active region in RCBM is formed by chalcogenide glass (ChG) doped with silver (Ag). We report the application of plasma enhanced chemical vapor deposition (PECVD) method for depositing ChG films which gives the advantage of flexibility in the composition and structure not easily achieved with sputtering or thermal evaporation. The growth kinetics of the deposition process, as well as the properties of the films is investigated. Optimal deposition conditions for reliable device performance are determined. The electrical characteristics of the devices fabricated at these conditions …


Electron Self-Trapping In Ge2 Se3 And Its Role In Ag And Sn Incorporation, Arthur H. Edwards, Kristy A. Campbell, Andrew C. Pineda Dec 2012

Electron Self-Trapping In Ge2 Se3 And Its Role In Ag And Sn Incorporation, Arthur H. Edwards, Kristy A. Campbell, Andrew C. Pineda

Electrical and Computer Engineering Faculty Publications and Presentations

We present a set of density functional theory (DFT) calculations on the electronic structure of Ag and Sn in Ge2 Se3 in a periodic model. We show that electron self-trapping is a persistent feature in the presence of many defects. Ag and Sn autoionize upon entering Ge2 Se3 becoming Ag+ and Sn2+ , respectively, and the freed electrons self trap at the lowest energy site. Both Ag and Sn can substitute for Ge, and we present formation energies as a function of Fermi level that show that Sn can substantially alter the incorporation of …


Simulations Of Artificial Neural Network With Memristive Devices, Thanh Thi Thanh Tran Dec 2012

Simulations Of Artificial Neural Network With Memristive Devices, Thanh Thi Thanh Tran

Boise State University Theses and Dissertations

The memristor has been hypothesized to exist as the missing fourth basic circuit element since 1971 [1]. A memristive device is a new type of electrical device that behaves like a resistor, but can change and remember its internal resistance. This behavior makes memristive devices ideal for use as network weights, which will need to be adjusted as the network tries to acquire correct outputs through a learning process. Recent development of physical memristive-like devices has led to an interest in developing artificial neural networks with memristors.

In this thesis, a circuit for a single node network is designed to …


Design Of Wideband Continuous-Time Δς Adcs Using Two-Step Quantizers, Sakkarapani Balagopal, Vishal Saxena Aug 2012

Design Of Wideband Continuous-Time Δς Adcs Using Two-Step Quantizers, Sakkarapani Balagopal, Vishal Saxena

Electrical and Computer Engineering Faculty Publications and Presentations

Continuous-time delta sigma (CT-ΔΣ) ADCs are established as the data conversion architecture of choice for the next-generation wireless applications. Several efforts have been made to simultaneously improve the bandwidth and dynamic range of ΔΣ ADCs. We proposed using two-step quantizer in a single-loop CT-ΔΣ modulator to achieve higher conversion bandwidth. This paper presents a tutorial for employing the design technique through a 130n CMOS implementation. The proposed 640 MS/s, 4th order continuous-time delta sigma modulator (CT-ΔΣM) incorporates a two-step 5-bit quantizer, consisting of only 13 comparators. The CT-ΔΣM achieves a dynamic range of 70 dB, peak SNDR of 65.3 …


A 1 Gs/S, 31 Mhz Bw, 76.3 Db Dynamic Range, 34 Mw Ct-Δς Adc With 1.5 Cycle Quantizer Delay And Improved Stf, Sakkarapani Balagopal, Vishal Saxena Aug 2012

A 1 Gs/S, 31 Mhz Bw, 76.3 Db Dynamic Range, 34 Mw Ct-Δς Adc With 1.5 Cycle Quantizer Delay And Improved Stf, Sakkarapani Balagopal, Vishal Saxena

Electrical and Computer Engineering Faculty Publications and Presentations

A 1 GS/s Continuous-time Delta-Sigma modulator (CT-ΔΣM) with 31 MHz bandwidth, 76.3 dB dynamic range and 72.5 dB signal-to-noise is reported in a 0.13μm CMOS technology. The design employs an excess loop delay (ELD) of more than one clock cycle for achieving higher sampling rate. The ELD is compensated using a fast-loop formed around the last integrator by using a sample-and-hold. Further, the effect of this ELD compensation scheme on the signal transfer function (STF) of a feedforward CT-ΔΣ architecture has been analyzed and reported. In this work, an improved STF is achieved by using a combination of feed-forward, feed-back …


Cmos Characterization, Modeling, And Circuit Design In The Presence Of Random Local Variation, Benjamin A. Millemon Sr. Aug 2012

Cmos Characterization, Modeling, And Circuit Design In The Presence Of Random Local Variation, Benjamin A. Millemon Sr.

Boise State University Theses and Dissertations

Random local variation in CMOS transistors complicates characterization procedures, modeling efforts, simulation tools, and circuit design methodologies in highly scaled CMOS devices. Mismatch is not only a concern for closely matched device pairs in analog circuits; digital circuit designers also have to consider the effects of random variation. Device characterization, modeling, process development, and circuit design engineers have to work together to mitigate the impact of random local variation. This thesis outlines the primary challenges of CMOS characterization, modeling, and circuit design in the presence of random local variation and offers guidelines and solutions to help mitigate and model the …


Investigations Of Conduction Mechanisms Of Ion-Conducting, Bridging Memory Devices (Cbram/Pmc/Ecm), Kyle Bradley Campbell Aug 2012

Investigations Of Conduction Mechanisms Of Ion-Conducting, Bridging Memory Devices (Cbram/Pmc/Ecm), Kyle Bradley Campbell

Boise State University Theses and Dissertations

Electron storage memory devices are approaching the minimum dimensions that are physically possible due to the onward march of Moore’s law. To continue to enable the increased memory densities needed for today’s applications, especially low power and size constrained mobile devices, new memory solutions are needed. Several candidates are emerging in this space. Metal ion-conducting memory devices are being investigated due to excellent scalability, speed, and low power. These devices are part of a memory class called resistive memory. In the literature, they are referred to as CBRAM (conductive bridge random access memory), PMC (programmable metallization cell), ECM (electrochemical metallization …


A Low-Power Single-Bit Continuous-Time Δς Converter With 92.5 Db Dynamic Range For Biomedical Applications, Sakkarapani Balagopal, Vishal Saxena Jul 2012

A Low-Power Single-Bit Continuous-Time Δς Converter With 92.5 Db Dynamic Range For Biomedical Applications, Sakkarapani Balagopal, Vishal Saxena

Electrical and Computer Engineering Faculty Publications and Presentations

A third-order single-bit CT-ΔΣ modulator for generic biomedical applications is implemented in a 0.15 µm FDSOI CMOS process. The overall power efficiency is attained by employing a single-bit ΔΣ and a subthreshold FDSOI process. The loop-filter coefficients are determined using a systematic design centering approach by accounting for the integrator non-idealities. The single-bit CT-ΔΣ modulator consumes 110 µW power from a 1.5 V power supply when clocked at 6.144 MHz. The simulation results for the modulator exhibit a dynamic range of 94.4 dB and peak SNDR of 92.4 dB for 6 kHz signal bandwidth. The figure of merit (FoM) for …


Monitoring Of The Aircraft Cabin Environment Via A Wireless Sensor Network, Michael Pook, Sin Ming Loo, Joshua Kiepert Jul 2012

Monitoring Of The Aircraft Cabin Environment Via A Wireless Sensor Network, Michael Pook, Sin Ming Loo, Joshua Kiepert

Electrical and Computer Engineering Faculty Publications and Presentations

Wireless sensor networks consist of physically distributed autonomous sensor nodes that cooperatively monitor physical or environmental conditions. The key benefit of wireless sensor networks is that they are capable of generating a more complete view of the sensed environment by acquiring larger quantities of correlated data than independent sensor monitors. This makes them ideally suited for applications where a complex environment with many interdependent factors must be monitored. The aircraft cabin is one such example of a highly dynamic environment which necessitates the use of an advanced sensing system. Thus, in order to gain a better understanding of the aircraft …


A Portable Wireless Particulate Sensor System For Continuous Real-Time Environmental Monitoring, James A. Hall Jr., Sin Ming Loo, Dale Stephenson, Ross Butler, Michael Pook, Joshua Kiepert, Jordan Anderson, Nicholas Terrell Jul 2012

A Portable Wireless Particulate Sensor System For Continuous Real-Time Environmental Monitoring, James A. Hall Jr., Sin Ming Loo, Dale Stephenson, Ross Butler, Michael Pook, Joshua Kiepert, Jordan Anderson, Nicholas Terrell

Electrical and Computer Engineering Faculty Publications and Presentations

Airborne particulate matter has been shown to be associated with morbidity and mortality, and may interfere with certain sensitive experiment. Understanding the levels and movements of particulate matter in an enclosed space can lead to a reduction in the impact of this material on health and experimental results. A system of environmental sensors including particulate matter, selected gasses, humidity, temperature, and pressure can be used to assist in tracking air movement, providing real-time mapping of potential contaminants as they move through a space. In this paper we present a system that is capable of sensing these environmental factors, collecting data …


Biomedical Matching Gui Development, Nazia Sarang May 2012

Biomedical Matching Gui Development, Nazia Sarang

Electrical and Computer Engineering Graduate Theses and Dissertations

Biomedical researchers constantly search for new methods to diagnose the extent of joint injuries in live human subjects. In order to achieve this, the researchers need to know the accurate three dimensional kinematic data of bones and joints and to accurately quantify how bones in a joint move relative to one another during dynamic activities. Algorithms have been developed previously to estimate the exact spatial position and movement of the bones. These methods involved generation of digitally reconstructed radiographs (DRR) from a three dimensional CT scan image of human joint with known position and orientation and comparing it with the …


Methods And Considerations For Testing Resistive Memories, Adam David Johnson May 2012

Methods And Considerations For Testing Resistive Memories, Adam David Johnson

Boise State University Theses and Dissertations

Resistive random access memory (RRAM) has been the topic of many research papers in recent years, as companies begin to look for non-volatile alternatives to NAND Flash. The standard testing methodologies for single devices do not work for most of the RRAM technologies, so new methods must be developed. Parasitic capacitance will destroy the device under test without current compliance circuitry. A test structure with the capability to apply current compliance in either direction was designed, simulated, and tested with electrical results. Pulses greater than 4.0 V were delivered with 100 μA current compliance, and parasitic capacitance was kept below …


Investigation Of The Current Transmission Hysteresis In Electron Hop Funnels, Marcus Pearlman May 2012

Investigation Of The Current Transmission Hysteresis In Electron Hop Funnels, Marcus Pearlman

Boise State University Theses and Dissertations

To integrate field emitter arrays (FEAs) into microwave vacuum electron devices, the use of insulating funnels, called electron hop funnels, is proposed. Electrons are emitted into the wide end of the funnel, and utilizing secondary electron emission to sustain current, the electrons "hop" up the funnel walls. Eventually the electrons exit the funnel as a denser and more uniform electron beam. To pull the electrons up the funnel, an electrode, called the hop electrode, is placed around the exit of the funnel to generate an electric field between the funnel exit and the electron source. The current transmitted through the …


Modeling And Measuring The Characteristics Of An Inductively Coupled Plasma Antenna For A Micro-Propulsion System, Sonya Mary Christensen May 2012

Modeling And Measuring The Characteristics Of An Inductively Coupled Plasma Antenna For A Micro-Propulsion System, Sonya Mary Christensen

Boise State University Theses and Dissertations

An ion thruster for satellites on the order of 10-50 kg in mass is currently under development. The thruster uses an Inductively Coupled Plasma (ICP) generated by a flat spiral antenna fabricated using the Low Temperature Co-Fired Ceramic (LTCC) materials system. The antenna operating frequency range (600 MHz to 1 GHz) in LTCC (εr=7.8) results in a wavelength on the same order of magnitude as the total length of conductor in the antenna. This condition provides some interesting antenna electric and magnetic field characteristics. The antenna has been modeled using COMSOL Multiphysics® Simulation Software. By changing the geometry …


Phase Matching For Surface Plasmon Enhanced Second Harmonic Generation In A Gold Grating Slab, Ngoc Luong, Cheng-Wen Cheng, Min-Hsiung Shih, Wan Kuang Apr 2012

Phase Matching For Surface Plasmon Enhanced Second Harmonic Generation In A Gold Grating Slab, Ngoc Luong, Cheng-Wen Cheng, Min-Hsiung Shih, Wan Kuang

Electrical and Computer Engineering Faculty Publications and Presentations

Surface plasmon enhanced second harmonic generation in gold grating slabs was investigated. The efficiency is analyzed with respect to the phase matching at the fundamental and the second harmonic frequencies. A classical electromagnetic model was developed under the weak nonlinearity approximation and solved by the finite element method. The measured zeroth order transmitted second harmonic intensity was found to be in quantitative agreement with numerical results. It is shown experimentally and numerically that proper phase matching at both frequencies improves the second harmonic efficiency.