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Articles 1231 - 1260 of 1314
Full-Text Articles in Physics
Tunable Few- To Many-Cycle Source For High-Order Harmonic Generation And Time-Resolved Spectroscopy, John Beetar
Tunable Few- To Many-Cycle Source For High-Order Harmonic Generation And Time-Resolved Spectroscopy, John Beetar
Electronic Theses and Dissertations, 2020-2023
The temporal confinement of laser light pulses to durations approaching the optical period, and the subsequent conversion of these pulses into extreme ultraviolet and x-ray wavelengths through the process of high-order harmonic generation (HHG), has enabled measurement and control of ultrafast processes spanning picosecond to attosecond timescales. Typically achieved by nonlinear compression of multi-cycle pulses in gas-filled hollow-core fibers, compression to single-and even sub-cycle durations is now becoming routine due to the availability of state-of-the-art Ti:sapphire laser amplifiers outputting millijoule level pulses with pulse durations below ten cycles. Even so, reliance on mJ-level Ti:sapphire lasers has in most cases limited …
Fabrication And Characterization Of Graphene-Based Heterostructure Using Molybdenum As Alternative Electrodes, Illias Klanurak
Fabrication And Characterization Of Graphene-Based Heterostructure Using Molybdenum As Alternative Electrodes, Illias Klanurak
Chulalongkorn University Theses and Dissertations (Chula ETD)
Interlayer coupling in graphene heterostructures can be used to modify their charge transport properties for the use in nanoelectronics applications. To achieve high-performance devices, graphene is typically encapsulated by two thin sheets of hexagonal boron nitride (hBN) and contacted using Cr/Au as electrodes. In this research, Mo was selected as alternative stand-alone electrodes to simplify the fabrication process. We have developed a recipe for the fabrication of field-effect transistor (FET) using twisted bilayer graphene (tBLG) as a transport channel. Mo was employed to make one-dimensional (1D) contacts to the edges of graphene by sputtering. Electronic transport measurement was then …
Fabrication Of Sno2 Layer As Electron Transport Layers For Perovskite Solar Cells, Rattanaphon Thanimkan
Fabrication Of Sno2 Layer As Electron Transport Layers For Perovskite Solar Cells, Rattanaphon Thanimkan
Chulalongkorn University Theses and Dissertations (Chula ETD)
A SnO2 has attracted more attention as electron transport layer (ETL) for perovskite solar cells (PSCs) because it has diverse advantages, e.g., wide bandgap energy, excellent optical and chemical stability, high transparency, high electron mobility, and easy preparation. In this work, SnO2 layer was fabricated by spin-coating and RF magnetron sputtering techniques with various conditions. The SnO2 layer was integrated into the planar structure of PSCs consisting of FTO/SnO2/MAPbI3/spiro-OMeTAD/Au. For spin-coating, SnO2 films can fully cover the FTO, but it has some particulates from recrystallization of SnO2 precursor as observed in the FESEM images. For RF sputtering technique, morphology of …
The Wormholes In The Modification Of General Relativity Theory, Takol Tangphati
The Wormholes In The Modification Of General Relativity Theory, Takol Tangphati
Chulalongkorn University Theses and Dissertations (Chula ETD)
A traversable wormhole, which is a class of wormholes in general relativity (GR), was proposed by Morris and Thorne in 1988. However, its existence requires the exotic matter violating the energy conditions. This thesis examines the wormhole solutions in the theory of massive gravity, focusing only on the de Rham, Gabadadze and Tolley (dRGT) theory of massive gravity which is the nonlinear massive gravity without ghost and quantify the wormhole solutions. We construct the wormhole solutions in context of the modified GR, investigate their stability, and examine the conditions of the exotic matter. Two methods for wormhole constructions are applied …
กระบวนการพัฒนาโปรแกรมตัวส่งระหว่างโมเดลเชิงวัตถุและเชิงสัมพันธ์ด้วยเทคนิคโลวโค้ดบนโอดู, โสภณวิชญ์ พิชิตเธียรธรรม
กระบวนการพัฒนาโปรแกรมตัวส่งระหว่างโมเดลเชิงวัตถุและเชิงสัมพันธ์ด้วยเทคนิคโลวโค้ดบนโอดู, โสภณวิชญ์ พิชิตเธียรธรรม
Chulalongkorn University Theses and Dissertations (Chula ETD)
งานวิจัยนี้นำเสนอมอดูลเจนเนอเรเตอร์ ซึ่งเป็นเครื่องมือสำหรับการเขียนโปรแกรมตัวส่งระหว่างโมเดลเชิงวัตถุและเชิงสัมพันธ์บนโอดู โอดูเป็นซอฟต์แวร์อีอาร์พีแบบเปิดเผยรหัสต้นฉบับที่รวบรวมมอดูลที่จำเป็นสำหรับการจัดการธุรกิจต่าง ๆ และผู้พัฒนาสามารถพัฒนามอดูลเพื่อขยายขีดความสามารถของโอดูได้ โดยในช่วงไม่กี่ปีที่ผ่านมาการพัฒนาซอฟต์แวร์บนโอดู มักต้องใช้เวลาในการเรียนรู้เพราะมีความซับซ้อนของเฟรมเวิร์ก จึงมีการนำแนวทางการพัฒนาซอฟต์แวร์แบบโลวโค้ด (การเขียนโค้ดที่น้อยกว่าปกติ) มาใช้ในการพัฒนามอดูลเจนเนอเรเตอร์ขึ้น เพื่อให้เป็นเครื่องมือสำหรับออกแบบและสร้างรหัสต้นฉบับสำหรับมอดูล ทำให้ผู้พัฒนาซอฟต์แวร์บนโอดูไม่ต้องกังวลเรื่องข้อผิดพลาดอันเนื่องมาจากความซับซ้อนของเฟรมเวิร์ก และให้ความสำคัญกับการเขียนโปรแกรมในด้านอื่น ๆ ได้มากขึ้น โดยเครื่องมือนี้ถูกพัฒนาด้วยภาษา ไพธอนให้เป็นเว็บแอปพลิเคชันทำงานบนเว็บเบราว์เซอร์ และได้มีการทดสอบการใช้งานกับทั้งผู้พัฒนามอดูลบนโอดู ผู้ใช้งานโอดูที่มีทักษะการเขียนโปรแกรม ผู้ที่ไม่เคยมีประสบการณ์กับโอดู และอาสาสมัครภายนอกบริษัท ซึ่งได้ผลลัพธ์ว่า ผู้ทดสอบทั้งหมดสามารถพัฒนามอดูลโดยใช้มอดูลเจนเนอเรเตอร์ได้สำเร็จ เครื่องมือนี้จึงสามารถช่วยให้ผู้ที่ไม่มีประสบการณ์ในการพัฒนามอดูลบนโอดูสามารถพัฒนามอดูลขึ้นมาได้โดยใช้เวลาไม่นาน และเมื่อเปรียบเทียบเวลาที่ใช้ในการพัฒนามอดูลของกลุ่มผู้พัฒนามอดูลบนโอดู ระหว่างแบบปกติที่เขียนโค้ดด้วยตนเองกับการใช้ มอดูลเจนเนอเรเตอร์ พบว่าการใช้เครื่องมือนี้สามารถลดเวลาการพัฒนามอดูลโดยเฉลี่ยได้ถึง 20% อีกทั้งมอดูลเจนเนอเรเตอร์ยังนำไปใช้ได้จริงในโครงการการพัฒนาซอฟต์แวร์ของบริษัท
การวิเคราะห์การเกิดตำหนิในการผลิตกระจกโฟลต, คณุตม์ ไพบูลย์
การวิเคราะห์การเกิดตำหนิในการผลิตกระจกโฟลต, คณุตม์ ไพบูลย์
Chulalongkorn University Theses and Dissertations (Chula ETD)
งานวิจัยนี้มุ่งเน้นศึกษาปัจจัยที่มีผลต่อการเกิดตำหนิและหาแนวทางปรับปรุงกระบวนการผลิตเพื่อลดปริมาณตำหนิชนิดฟองอากาศและรีม ด้วยการนำตัวแปรจากกระบวนการผลิตได้แก่ การชั่งน้ำหนักส่วนผสม อุณหภูมิในการหลอม อุณหภูมิในการขึ้นรูปและองค์ประกอบทางเคมีของกระจก มาหาความสัมพันธ์กับปริมาณตำหนิที่เกิดขึ้นด้วยการวิเคราะห์การถดถอย จากผลการวิเคราะห์ตำหนิฟองอากาศด้วยเทคนิคแมสสเปกโทรเมตรีและเทคนิครามานสเปคโทรสโคปีพบว่าฟองอากาศส่วนใหญ่พบแก๊ส CO2 เป็นองค์ประกอบอยู่ที่ 30 ถึง 70 เปอร์เซ็นต์ ซึ่งเกิดจากการสลายตัวทางความร้อนของวัตถุดิบและการไล่ฟองอากาศที่ไม่สมบูรณ์ และจากความสัมพันธ์ของปริมาณฟองอากาศและตัวแปรจากกระบวนการผลิตพบว่า อุณหภูมิการหลอมที่สูงขึ้น ปริมาณ fining agent ที่น้อยลง และกำลังการผลิตที่เพิ่มขึ้นส่งผลให้ตำหนิชนิดฟองอากาศเพิ่มขึ้น จากการศึกษาตำหนิชนิดรีมโดยใช้กล้องจุลทรรศน์อิเล็กตรอนแบบส่องกราดร่วมกับการวัดการกระจายพลังงานของรังสีเอกซ์ในการวิเคราะห์องค์ประกอบธาตุของตำหนิชนิดรีมเทียบกับบริเวณโดยรอบโดยพบว่ารีมมีปริมาณธาตุ Si และ Na สูงกว่าบริเวณโดยรอบ ซึ่งเกิดจากการชั่งวัตถุดิบที่คลาดเคลื่อนไปจากสูตรการผลิต โดยเกิดจากวัตถุดิบติดค้างบริเวณกรวยรับวัตถุดิบ ส่งผลให้องค์ประกอบทางเคมีของส่วนผสมไม่สม่ำเสมอ ยิ่งความแตกต่างของน้ำหนักส่วนผสมจากสูตรการผลิตยิ่งมาก จะทำให้ปริมาณรีมเพิ่มสูงขึ้น ซึ่งสามารถความผิดพลาดจากการชั่งนี้สามารถแก้ไขได้โดยติดตั้งค้อนลมเพื่อเคาะวัตถุดิบให้ลงไปในโม่ผสมวัตถุดิบครบถ้วนตามสูตรการผลิต
Characterization Of Reduced Graphene Oxide Anode For Application In Algae Biophotovoltaic Platforms, Siti Aisyah Ibrahim
Characterization Of Reduced Graphene Oxide Anode For Application In Algae Biophotovoltaic Platforms, Siti Aisyah Ibrahim
Student Works (2020-2029)
Research interest in recent times has placed much focus on electrode technology for biophotovoltaics (BPV) especially in algal fuel cells (AFCs) application. The purpose of this investigation is therefore directed towards optimizing reduced graphene oxide (rGO) thin film as an electrode for AFCs application by means of annealing and plasma treatment. First stage involves deposition of six (6) layers of rGO thin film using Langmuir-Blodgett (LB) method. The anode electrodes were then annealed at different temperatures under vacuum condition. For plasma treatment meanwhile, a variation of voltage was used to vary the plasma conditions resulting in different surface morphology. To …
Vanadyl Tetrabutyltetrakis(Dimethylamino) Phthalocyanine Based Thin Films For Organic Sensor And Transistor Applications, Nur Adilah Roslan
Vanadyl Tetrabutyltetrakis(Dimethylamino) Phthalocyanine Based Thin Films For Organic Sensor And Transistor Applications, Nur Adilah Roslan
Student Works (2020-2029)
Organic electronic devices have been successively making progress into the commercial market to substitute conventional inorganic electronic devices. The endeavor to improve the performance displayed by organic semiconductor materials has urged a substantial number of researchers set to seek new materials. Metal phthalocyanines (MPcs), in particular, have garnered much attention due to their enticing benefits viz., cost efficiency, eco-friendly organic material, as well as thermal and chemical stability. Primarily, this study investigated the physical, morphological, optical, and electrical properties of vanadyl 3,10,17,24-tetra-tert-butyl-1,8,15,22-tetrakis(dimethylamino)-29H,31H-phthalocyanine or synonymously known as vanadyl tetrabutyltetrakis (dimethylamino) phthalocyanine (VTP). Subsequently, this study looked into the potential applications of …
Synthesis And Characterization Of Hybrid Organic Coating System To Reduce Thermal Degradation Of Solar Cells, Mohd Zaini Farah Khaleda
Synthesis And Characterization Of Hybrid Organic Coating System To Reduce Thermal Degradation Of Solar Cells, Mohd Zaini Farah Khaleda
Student Works (2020-2029)
Thermal-decreasing hybrid organic coatings were developed for crystalline solar cells by using two types of binder systems; namely Aminopropyltriethoxysolution (APTES) / Methyltrimethoxysilane (MTMS) binder system (labelled as B1) and Methyltrimethoxysilane (MTMS) / nitric acid (HNO3) binder system (labelled as B2). Three types of nanoparticles; Titanium dioxide, TiO2 (Anatase), Zinc oxide, ZnO and Tin dioxide, SnO2 nanoparticles with different weight percentage were introduced inside each binder system namely; 20 wt%, TiO2 (T1B1 coating), 60 wt% TiO2 (T2B1 coating), 20 wt% ZnO (Z1B1 coating), 60 wt% ZnO (T2B1 coating), 20 wt% SnO2 (S1B1 coating) and 60 wt% SnO2 (S2B1 coating) for B1 …
Effect Of Non-Thermal Atmospheric Pressure Plasma On Wound Bacteria And Cell Proliferation, Mohd Nasir Norhayati
Effect Of Non-Thermal Atmospheric Pressure Plasma On Wound Bacteria And Cell Proliferation, Mohd Nasir Norhayati
Student Works (2020-2029)
Non-thermal plasma produced in the plasma jet at atmospheric pressure consists of many reactive species and free radicals. The use of the atmospheric plasma jet has been expanded from surface treatment on polymers and biomaterials to the application as plasma medicine. It has been studied as a tools for wound sterilizations, enhance wound healing, topical treatment of skin diseases caused by bacteria infection and cancer therapy in recent research. The current study aims to investigate the effect of plasma on chronic wound bacteria as a supplementary to wound management particularly for compromised patients. The common practice in wound management is …
Parallelized X-Ray Tracing With Gpu Ray-Tracing Engine, Joseph Ulseth
Parallelized X-Ray Tracing With Gpu Ray-Tracing Engine, Joseph Ulseth
Electronic Theses and Dissertations, 2020-2023
X-ray diffraction tomography (XDT) is used to probe material composition of objects, providing improved contrast between materials compared to conventional transmission based computed tomography (CT). In this work, a small angle approximation to Bragg's Equation of diffraction is coupled with parallelized computing using Graphics Processing Units (GPUs) to accelerate XDT simulations. The approximation gives rise to a simple yet useful proportionality between momentum transfer, radial distance of diffracted signal with respect to incoming beam's location, and depth of material, so that ray tracing may be parallelized. NVIDIA's OptiX ray-tracing engine, a parallelized pipeline for GPUs, is employed to perform XDT …
Fluorescence Microscopy With Tailored Illumination Light, Jialei Tang
Fluorescence Microscopy With Tailored Illumination Light, Jialei Tang
Electronic Theses and Dissertations, 2020-2023
Fluorescence microscopy has long been a valuable tool for biological and medical imaging. Control of optical parameters such as the amplitude, phase, polarization and propagation angle of light gives fluorescence imaging great capabilities ranging from single molecule imaging to long-term observation of living organisms. While numerous fluorescence imaging techniques have been developed over the past decades, there is always an inevitable tradeoff among the spatial resolution, imaging speed, contrast, photodamage and the total cost when it comes to choose the appropriate microscope. A main goal of my dissertation research is to develop state-of-the-art microscope systems that exhibit unprecedented performance in …
Nonlinear Optical Mechanisms In Semiconductors And Enhanced Nonlinearities At Epsilon-Near-Zero, Sepehr Ahmadzadeh Benis
Nonlinear Optical Mechanisms In Semiconductors And Enhanced Nonlinearities At Epsilon-Near-Zero, Sepehr Ahmadzadeh Benis
Electronic Theses and Dissertations, 2020-2023
Light does not interact with itself in linear optical materials. Such interactions occur only in non-linear optical (NLO) materials and typically require high intensity optical beams to be signifi-cant. The ever-increasing role of NLO, where intense light may change the properties of the me-dium, has created a pressing demand to invent materials for achieving more efficient light-light and light-matter interaction due to their potential capacity to augment and possibly replace cur-rent technologies with more efficient devices. There are numerous applications of NLO devices in fundamental science, technology, health, and defense such as all-optical computation and sig-nal processing, ultrashort laser technology, …
Iterative Optical Diffraction Tomography For Reconstruction Of Multiply-Scattering Objects, Shengli Fan
Iterative Optical Diffraction Tomography For Reconstruction Of Multiply-Scattering Objects, Shengli Fan
Electronic Theses and Dissertations, 2020-2023
As a label-free, non-destructive, high-resolution, and quantitative imaging technique, optical diffraction tomography (ODT) has been widely used to image biological samples and microstructures, such as cells, tissues, and optical fibers. The refractive-index (RI) distribution of an object is reconstructed from multi-view measurements of diffracted fields emerging from the object. Typical ODT setups include the object rotating configuration (ORC) and the illumination scanning configuration (ISC). One major limitation of ODT is that it is only applicable to weakly-scattering objects. In this dissertation, novel methods have been developed to overcome the reconstruction difficulty caused by multiple scattering, so as to extend ODT …
Analysis Of Chaotic And Regular Behavior Of Matinyan-Yang-Mills-Higgshamiltonian System, Engi̇n Kandiran, Avadi̇s Si̇mon Hacinliyan
Analysis Of Chaotic And Regular Behavior Of Matinyan-Yang-Mills-Higgshamiltonian System, Engi̇n Kandiran, Avadi̇s Si̇mon Hacinliyan
Turkish Journal of Physics
In this study we analyze the Matinyan-Yang-Mills-Higgs (MYMH) system, based on semiclassical solutions to a Yang-Mills model, using Poincaré surfaces of section and the method of averaging. To investigate the possible chaotic behavior for the system, we simulate the trajectories of the system and calculate the Lyapunov exponents. We observe that the system displays weakly chaotic behavior. We search for the existence of approximately conserved quantities for the system using the method of averaging. In this way, we show the existence of four fixed points where period orbits exist.
Octonion Form Of Duality-Invariant Field Equations For Dyons, Mustafa Emre Kansu, Murat Tanişli, Süleyman Demi̇r
Octonion Form Of Duality-Invariant Field Equations For Dyons, Mustafa Emre Kansu, Murat Tanişli, Süleyman Demi̇r
Turkish Journal of Physics
The hypothetical particles dyons, which carry both electric and magnetic charges simultaneously, are widely discussed in application to electromagnetic theory and magnetohydrodynamics. Particularly, the duality-invariant field equations were suggested with suitable definitions of the dyon's electromagnetic characteristics. In this study, we propose an alternative formulation of the duality-invariant field equations for dyons based on octonion algebra. Octonions have been used to express the equations for potentials, field strengths, and sources in a more compact and consistent manner. Additionally, the octonionic form of the energy conservation law for dyons has been derived.
Reactive Wetting Of Metallic/Ceramic (Al/Α-Al2 O3 ) Systems: A Parallel Moleculardynamics Simulation Study, Gürcan Aral
Reactive Wetting Of Metallic/Ceramic (Al/Α-Al2 O3 ) Systems: A Parallel Moleculardynamics Simulation Study, Gürcan Aral
Turkish Journal of Physics
The reactive wetting process of a flat solid alumina (α-Al2 O3) ceramic surface by metallic aluminum (Al) nanodroplets with different shapes (spherical, cylindrical, and layer) is studied using parallel molecular dynamics (MD) simulations based on a variable charge MD method, with focuses on heat transfer, mass transfer, and the structure of the reactive region at the Al/α-Al2 O3 interface. We find that the diffusion of oxygen (O) atoms from the substrate into the droplet leads to the formation of a continuous layer of reaction product at the interface. The diffusion length of oxygen atoms into the spherical Al droplet is …
Structural And Optical Properties Of Zno Films Obtained On Mesoporous Sisubstrates By The Method Of Hf Magnetron Sputtering, Valeriy Kidalov, Alena Dyadenchuk, Yuriy Bacherikov, Anton Zhuk, Tetyana Gorbaniuk, Igor Rogozin, Vitali Kidalov
Structural And Optical Properties Of Zno Films Obtained On Mesoporous Sisubstrates By The Method Of Hf Magnetron Sputtering, Valeriy Kidalov, Alena Dyadenchuk, Yuriy Bacherikov, Anton Zhuk, Tetyana Gorbaniuk, Igor Rogozin, Vitali Kidalov
Turkish Journal of Physics
In the present work, ZnO films were obtained on mesoporous silicon substrates by the method of HF magnetron sputtering of a metallic zinc target in reaction oxygen and argon gas medium. The properties of the ZnO films obtained on mesoporous substrates were studied depending on the ratio of the partial pressures of the working gases (argon/oxygen). X-ray analysis showed that in the process of deposition, the ZnO films of a hexagonal structure were formed. The effect of the porous layer on the structural and luminescent properties of the thin ZnO films was studied. The results showed that the porous silicon …
Anisotropic Magnetoresistance And Planar Hall Effect In Magnetoresistivenife/Pt Thin Film, Erdem Demi̇rci̇
Anisotropic Magnetoresistance And Planar Hall Effect In Magnetoresistivenife/Pt Thin Film, Erdem Demi̇rci̇
Turkish Journal of Physics
The magnetoresistive NiFe/Pt sensor was fabricated by using standard microlithography and sputter deposition techniques and then the magnetic and magnetotransport properties were investigated. The magnetic properties of the sample show that the easy axis of magnetization prefers a predefined direction along the Hall bar. Moreover, the sample has uniaxial magnetic anisotropy due to the growth-induced magnetic anisotropy. On the other hand, the Anisotropic magnetoresistance (AMR) and the Planar Hall effect (PHE) of the sample were investigated in detail between 0° and 360°. The angle-dependent AMR and PHE signals at the in-plane magnetic field of constant magnitude intersect at certain angles. …
Frequency And Voltage Dependence Of Electrical Conductivity, Complex Electricmodulus, And Dielectric Properties Of Al/Alq3 /P-Si Structure, İkram Orak, Abdulkeri̇m Karabulut
Frequency And Voltage Dependence Of Electrical Conductivity, Complex Electricmodulus, And Dielectric Properties Of Al/Alq3 /P-Si Structure, İkram Orak, Abdulkeri̇m Karabulut
Turkish Journal of Physics
In order to enhance the capacitance of the Al/p-Si metal-semiconductor structure, the Alq3 thin film was coated between these two layers using the spin coating technique as the interlayer. The electrical conductivity, real and imaginary parts of electric modulus, dielectric loss and dielectric constant parameters were examined at the room temperature by the help of admittance measurements in the 100 kHz to 1 MHz frequency range. The effect of frequency on the dielectric constant and dielectric loss values is negligible at the negative voltage values, up to about 0.8 V, and these values rapidly ascended after 0.8 V. The function …
Four-Quark Exotic Mesons, Shahin Agaev, Kazem Azizi, Hayri̇ye Sundu Pamuk
Four-Quark Exotic Mesons, Shahin Agaev, Kazem Azizi, Hayri̇ye Sundu Pamuk
Turkish Journal of Physics
We review our investigations devoted to the analysis of the resonances Zc(3900), Zc(4430), Zc(4100), X(4140), X(4274), α1(1420), Y(4660), X(2100), X(2239), and Y(2175) discovered in various processes by Belle, BaBar, BESIII, D0, CDF, CMS, LHCb and COMPASS collaborations. These resonances are considered as serious candidates to four-quark (tetraquark) exotic mesons. We treat all of them as diquark-antidiquark states with relevant spin-parities, find their masses and couplings, as well as explore their dominant strong decay channels. Calculations are performed in the context of the QCD sum rule method. Thus, the spectroscopic parameters of the tetraquarks are evaluated using the two-point sum rules. …
Prediction Of Standard Enthalpies Of Formation Of Boron Nitride Nanocones, Fahimeh Shojaie
Prediction Of Standard Enthalpies Of Formation Of Boron Nitride Nanocones, Fahimeh Shojaie
Turkish Journal of Physics
Prediction of the standard enthalpy of formation (ΔfH0298) of boron nitride nanocone (BNNCs) structures with disclination angles 60°, 120°, and 180°is recommended to be performed by the isodesmic reaction approach. NH3, BH3, and N2H4 were selected as key reference compounds. In order to calculate ΔfH0298 of nanocones, we must first calculate the enthalpies of nanocone rings at their apexes. For this purpose, ΔfH0298 values of 40 different structures, such as boron, nitrogen, and hydrogen compounds, have been calculated by combining Gaussian-4 (G4) theory calculations with the isodesmic and other balanced reactions approach. At each stage of the calculations, the previously …
Study Of Kno Scaling In The Emulsion Based Neutrino Experiments, Çağin Kamişcioğlu
Study Of Kno Scaling In The Emulsion Based Neutrino Experiments, Çağin Kamişcioğlu
Turkish Journal of Physics
KNO scaling was put forward by Koba-Nielsen-Olesen in 1972 and then tested by various experiments up to now. In this paper, the data on charged hadron multiplicity moments with KNO scaling of CHORUS and OPERA, both of them emulsion-based neutrino experiments, are compared. The results are given in detail which is very useful for tuning in MC event generators.
Generating Velocity-Dependent Potential In All Partial Waves, Ashwini Kumar Behera, Ujjwal Laha, Jhasaketan Bhoi
Generating Velocity-Dependent Potential In All Partial Waves, Ashwini Kumar Behera, Ujjwal Laha, Jhasaketan Bhoi
Turkish Journal of Physics
Velocity/energy-dependent potential to a parent nonlocal interaction is constructed for all partial waves by Taylor series expansion method and the related s and p-wave phase shifts for N-N and α-N systems are computed by application of modified phase equation. Our phase shifts are in good agreement with standard data.
On-Chip Quantum Optics And Integrated Optomechanics, David Hoch, Timo Sommer, Sebastian Mueller, Menno Poot
On-Chip Quantum Optics And Integrated Optomechanics, David Hoch, Timo Sommer, Sebastian Mueller, Menno Poot
Turkish Journal of Physics
Recent developments in quantum computing and the growing interest in optomechanics and quantum optics need platforms that enable rapid prototyping and scalability. This can be fulfilled by on-chip integration, as we present here. The different nanofabrication steps are explained, and our automated measurement setup is discussed. We present an opto-electromechanical device, the H-resonator, which enables optomechanical experiments such as electrostatic springs and nonlinearities and thermomechanical squeezing. Moreover, it also functions as an optomechanical phase shifter, an essential element for our integrated quantum optics efforts. Besides this, the equivalent of a beam splitter in photonics-the directional coupler-is shown. Its coupling ratio …
Investigation Of Some Nuclear Structure Properties Of 213bi, 201ti, 188re, 186re, 133xe, 131i, 125i, 123i, 111in, 94tc, 90y, 67ga, 67cu, 62cu, 61cu, 55co, And 48v Nuclei Used In Spect In Axial Deformation, Ozan Artun
Turkish Journal of Physics
The present work mainly purposed to investigate significant nuclear structure properties nuclei used in single photon emission computed tomography (SPECT), in addition to ground state nuclear properties such as the binding energy per particle, the root mean square (rms) charge, and proton and neutron radii. Besides, we calculated the neutron skin thicknesses (NST), the proton, neutron quadrupole moments ($Q_{P}, Q_{N})$, quadrupole deformation parameter ($\beta_{2})$, and the proton and neutron pairing energies ($P_{P}, P_{N})$ to determine shapes and deformations of SPECT nuclei including odd-odd or odd-even/even-odd nuclei in axial symmetry for Skyrme and Gogny interactions. To analyze the accuracy of the …
A Nonminimally Coupled, Conformally Extended Einstein-Maxwell Theory Of Pp-Waves, Dündar Teki̇n Dereli̇, Yorgo Şeni̇koğlu
A Nonminimally Coupled, Conformally Extended Einstein-Maxwell Theory Of Pp-Waves, Dündar Teki̇n Dereli̇, Yorgo Şeni̇koğlu
Turkish Journal of Physics
A nonminimal coupling of Weyl curvatures to electromagnetic fields is considered in Brans-Dicke-Maxwell theory. The gravitational field equations are formulated in a Riemannian spacetime where the spacetime torsion is constrained to zero by the method of Lagrange multipliers in the language of exterior differential forms. The significance and ramifications of nonminimal couplings to gravity are examined in a pp-wave spacetime.
Field-Free Quantum-Spin-1/2 Xxz Model In Three-Dimensions: Phases, Phase Transitions, And Phase Diagrams By Renormalization Group Theory, Ozan Sabahatti̇n Sariyer
Field-Free Quantum-Spin-1/2 Xxz Model In Three-Dimensions: Phases, Phase Transitions, And Phase Diagrams By Renormalization Group Theory, Ozan Sabahatti̇n Sariyer
Turkish Journal of Physics
The field-free quantum-spin-1/2 XXZ model is studied in three-dimensions using renormalization group theory. We obtain global phase diagrams and critical properties. We identify zero-temperature quantum phase transitions at isotropic points, as well as long-range order below critical temperatures at all anisotropies. We show that the excitation spectrum is gapless in XY-like, and gapped in Ising-like anisotropy regimes. Besides, internal energy density, specific heat, nearest-neighbor entanglement measures and spin-spin correlations are obtained globally at all temperatures. Our numerical results cover the global range of anisotropy parameter, for both ferromagnetic and antiferromagnetic cases.
Influence Of Annealing On Photoelectric Characteristics And Stability Of Elements Based On Si-Bi$_{2}$Te$_{3-X}$Se$_{X}$, Gurban Ahmadov
Influence Of Annealing On Photoelectric Characteristics And Stability Of Elements Based On Si-Bi$_{2}$Te$_{3-X}$Se$_{X}$, Gurban Ahmadov
Turkish Journal of Physics
In the manufacture of Bi$_{2}$Te$_{3-x}$Se$_{x}$-based elements using two sources of the deposited substance, they were initially annealed at a temperature of 150-200 \textdegree Ñ in a low vacuum. Heat treatment led to a slight increase in short circuit current and an increase in open circuit voltage. When the elements were heated in high vacuum, as well as in atmospheres of argon, nitrogen, hydrogen, helium and other gases, irreversible changes in the characteristics were not detected. Heat treatment of elements at a temperature of 100--150 \textdegree C in oxygen always improves their performance. It is assumed that annealing stimulates the growth …
On Current-Voltage And Capacitance-Voltage Characteristics Of Metal-Semiconductor Contacts, Abdulmeci̇t Turut
On Current-Voltage And Capacitance-Voltage Characteristics Of Metal-Semiconductor Contacts, Abdulmeci̇t Turut
Turkish Journal of Physics
It is expected the fact that the current following across metal-semiconductor (MS) rectifying contact named as Schottky barrier diode(SBDs)and effect of sample temperature on their electrical properties obey thermionic emission (TE) current model. But, it has been seen that the abnormal behaviors in the measured electrical characteristics cannot be exactly under stood by the classical TE transport theory. Intheliterature, the observed abnormal behaviors have been successfully explained by a Gaussian distribution function and by the pinch-off model being interaction of the neighbor patches suggested by Tung and coworkers, the named discrete regions model as "patches" with low barrier placed in …