Galileo's Verse,
2020
Claremont Colleges
Galileo's Verse, Bruce F. Mcguffin
Journal of Humanistic Mathematics
A response to Thomas Hardy's statement "If Galileo had said in verse that the world moved, the inquisition might have let him alone."
Probing The Intergalactic Turbulence With Fast Radio Bursts,
2020
University of Wisconsin
Probing The Intergalactic Turbulence With Fast Radio Bursts, Siyao Xu, Bing Zhang
Physics & Astronomy Faculty Research
The turbulence in the diffuse intergalactic medium (IGM) plays an important role in various astrophysical processes across cosmic time, but it is very challenging to constrain its statistical properties both observationally and numerically. Via the statistical analysis of turbulence along different sight lines toward a population of fast radio bursts (FRBs), we demonstrate that FRBs provide a unique tool to probe the intergalactic turbulence. We measure the structure function (SF) of dispersion measures (DMs) of FRBs to study the multiscale electron density fluctuations induced by the intergalactic turbulence. The SF has a large amplitude and a Kolmogorov power-law scaling with …
A Cryogenic Silicon Interferometer For Gravitational-Wave Detection,
2020
The University of Texas Rio Grande Valley
A Cryogenic Silicon Interferometer For Gravitational-Wave Detection, R X. Adhikari, K. Arai, A F. Brooks, C Wipf, O Aguiar, P Altin, B Barr, L. Barsotti, R Bassiri, Volker Quetschke
Physics & Astronomy Faculty Publications
The detection of gravitational waves from compact binary mergers by LIGO has opened the era of gravitational wave astronomy, revealing a previously hidden side of the cosmos. To maximize the reach of the existing LIGO observatory facilities, we have designed a new instrument able to detect gravitational waves at distances 5 times further away than possible with Advanced LIGO, or at greater than 100 times the event rate. Observations with this new instrument will make possible dramatic steps toward understanding the physics of the nearby Universe, as well as observing the Universe out to cosmological distances by the detection of …
Phase Transition Behaviour In Yeast And Bacterial Populations Under Stress,
2020
University of Missouri
Phase Transition Behaviour In Yeast And Bacterial Populations Under Stress, Stephen Ordway, Dawn King, David Friend, Christine Noto, Snowlee Phu, Holly Huelskamp, R. Inglis, Wendy Olivas, Sonya Bahar
Physics Faculty Works
Non-equilibrium phase transitions from survival to extinction have recently been observed in computational models of evolutionary dynamics. Dynamical signatures predictive of population collapse have been observed in yeast populations under stress. We experimentally investigate the population response of the budding yeast Saccharomyces cerevisiae to biological stressors (temperature and salt concentration) in order to investigate the system's behaviour in the vicinity of population collapse. While both conditions lead to population decline, the dynamical characteristics of the population response differ significantly depending on the stressor. Under temperature stress, the population undergoes a sharp change with significant fluctuations within a critical temperature range, …
Constraining Ancient Magmatic Evolution On Mars Using Crystal Chemistry Of Detrital Igneous Minerals In The Sedimentary Bradbury Group, Gale Crater, Mars,
2020
Rice University
Constraining Ancient Magmatic Evolution On Mars Using Crystal Chemistry Of Detrital Igneous Minerals In The Sedimentary Bradbury Group, Gale Crater, Mars, V. Payré, K. L. Siebach, R. Dasgupta, Arya Udry, E. B. Rampe, S. M. Morrison
Geoscience Faculty Research
Understanding magmatic processes is critical to understanding Mars as a system, but Curiosity's investigation of dominantly sedimentary rocks has made it difficult to constrain igneous processes. Igneous classification of float rocks is challenging because of the following: (1) the possibility that they have been affected by sedimentary processes or weathering, and (2) grain size heterogeneity in the observed rock textures makes the small‐scale compositions measured by rover instruments unreliable for bulk classification. We avoid these ambiguities by using detrital igneous mineral chemistry to constrain models of magmatic processes in the source region for the fluvio‐deltaic Bradbury group. Mineral chemistry is …
Multiband Gpi Imaging Of The Hr 4796a Debris Disk,
2020
Space Telescope Science Institute
Multiband Gpi Imaging Of The Hr 4796a Debris Disk, Christine Chen, Johan Mazoyer, Charles A. Poteet, Bin Ren, Gaspard Duch Ne, Justin Hom, Pauline Arriaga, Maxwell A. Millar-Blanchaer, Jessica Arnold, Vanessa P. Bailey, Juan Sebastián Bruzzone, Jeffrey Chilcote, Lodie Choquet, Robert J. De Rosa, Zachary H. Draper, Thomas M. Esposito, Michael P. Fitzgerald, Katherine B. Follette, Pascale Hibon, Dean C. Hines, Paul Kalas, Franck Marchis, Brenda Matthews, Julien Milli, Jennifer Patience, Marshall D. Perrin, Laurent Pueyo, Abhijith Rajan, Fredrik T. Rantakyrö, Timothy J. Rodigas, Gael M. Roudier, Glenn Schneider, Kimberly Ward-Duong, Et Al
Astronomy: Faculty Publications
We have obtained Gemini Planet Imager (GPI) J-, H-, K1-, and K2-Spec observations of the iconic debris ring around the young, main-sequence star HR 4796A. We applied several point-spread function (PSF) subtraction techniques to the observations (Mask-and-Interpolate, RDI-NMF, RDI-KLIP, and ADI-KLIP) to measure the geometric parameters and the scattering phase function for the disk. To understand the systematic errors associated with PSF subtraction, we also forward-modeled the observations using a Markov Chain Monte Carlo framework and a simple model for the disk. We found that measurements of the disk geometric parameters were robust, with all of our analyses yielding consistent …
Galaxy And Mass Assembly (Gama): Demonstrating The Power Of Wise In The Study Of Galaxy Groups To Z < 0.1,
2020
Swinburne University of Technology
Galaxy And Mass Assembly (Gama): Demonstrating The Power Of Wise In The Study Of Galaxy Groups To Z < 0.1, M. E. Cluver, T. H. Jarrett, E. N. Taylor, A. M. Hopkins, S. Brough, S. Casura, B. W. Holwerda, J. Liske, K. A. Pimbblet, A. H. Wright
Faculty and Staff Scholarship
Combining high-fidelity group characterization from the Galaxy and Mass Assembly survey and source-tailored z < 0.1 photometry from the Wide-Field Infrared Survey Explorer (WISE) survey, we present a comprehensive study of the properties of ungrouped galaxies, compared to 497 galaxy groups (4 ≤ N FoF ≤ 20) as a function of stellar and halo mass. Ungrouped galaxies are largely unimodal in WISE color, the result of being dominated by star-forming, late-type galaxies. Grouped galaxies, however, show a clear bimodality in WISE color, which correlates strongly with stellar mass and morphology. We find evidence for an increasing early-type fraction, in stellar mass bins between 1010 M o˙ ≲ M stellar ≲ 1011 M o˙, with increasing halo mass. Using ungrouped, late-type galaxies with star-forming colors (W2-W3 > 3), we define a star-forming main sequence (SFMS), which we use to delineate systems that have moved below the sequence ("quenched"for the purposes of this work). We find that with increasing halo mass, the relative number of late-type systems on the SFMS decreases, with a corresponding increase in early-type, quenched systems at high stellar mass (M stellar > 1010.5 M o˙), consistent with mass quenching. Group galaxies with masses M stellar < 1010.5 M o˙ show evidence of quenching consistent with environmentally driven processes. The stellar mass distribution of late-type, quenched galaxies suggests that it may be an intermediate population as systems transition from being star-forming and late-type to the "red sequence."Finally, we use the projected area of groups on the sky to extract groups that are (relatively) compact for their halo mass. Although these show a marginal increase in their proportion of high-mass and early-type galaxies compared to nominal groups, a clear increase in quenched fraction is not evident.
Using The Baryonic Tully–Fisher Relation To Measure Ho,
2020
Case Western Reserve University
Using The Baryonic Tully–Fisher Relation To Measure Ho, Stacy S. Mcgaugh
Faculty Scholarship
We explore the use of the baryonic Tully-Fisher relation (bTFR) as a new distance indicator. Advances in near-IR imaging and stellar population models, plus precise rotation curves, have reduced the scatter in the bTFR such that distance is the dominant source of uncertainty. Using 50 galaxies with accurate distances from Cepheids or the tip magnitude of the red giant branch, we calibrate the bTFR on a scale independent of H o . We then apply this calibrated bTFR to 95 independent galaxies from the SPARC sample, using CosmicFlows-3 velocities, to deduce the local value of H o . We find …
Expres. I. Hd 3651 As An Ideal Rv Benchmark,
2020
San Francisco State University
Expres. I. Hd 3651 As An Ideal Rv Benchmark, John M. Brewer, Debra A. Fischer, Ryan T. Blackman, Samuel H. C. Cabot, Allen B. Davis, Gregory Laughlin, Christopher Leet, J. M. Joel Ong, Ryan R. Petersburg, Andrew E. Szymkowiak, Lily L. Zhao, Gregory W. Henry, Joe Llama
Information Systems and Engineering Management Research Publications
The next generation of exoplanet-hunting spectrographs should deliver up to an order of magnitude improvement in radial velocity (RV) precision over the standard 1 ${\rm{m}}\ {{\rm{s}}}^{-1}$ state-of-the-art spectrographs. This advance is critical for enabling the detection of Earth-mass planets around Sun-like stars. New calibration techniques such as laser frequency combs and stabilized etalons ensure that the instrumental stability is well characterized. However, additional sources of error include stellar noise, undetected short-period planets, and telluric contamination. To understand and ultimately mitigate error sources, the contributing terms in the error budget must be isolated to the greatest extent possible. Here, we introduce …
Globe Observer Data: 2016–2019,
2020
NASA Goddard Space Flight Center
Globe Observer Data: 2016–2019, Helen M. Amos, Matthew J. Starke, Tina M. Rogerson, Marilé Colón Robles, Travis Anderson, Rebecca Boger, Brian A. Campbell, Russanne D. Low, Peder Nelson, David Overoye, Jessica E. Taylor, Kristen L. Weaver, Trena M. Ferrell, Holli Kohl, Theresa G. Schwerin
Publications and Research
This technical report summarizes the GLOBE Observer data set from 1 April 2016 to 1 December 2019. GLOBE Observer is an ongoing NASA‐sponsored international citizen science project that is part of the larger Global Learning and Observations to Benefit the Environment (GLOBE) Program, which has been in operation since 1995. GLOBE Observer has the greatest number of participants and geographic coverage of the citizen science projects in the Earth Science Division at NASA. Participants use the GLOBE Observer mobile app (launched in 2016) to collect atmospheric, hydrologic, and terrestrial observations. The app connects participants to satellite observations from Aqua, Terra, …
Staerkel Planetarium's Doors Closed, But Skies Are Always Open,
2020
Parkland College
Staerkel Planetarium's Doors Closed, But Skies Are Always Open, Erik Johnson
Natural Science Faculty
Ask any astronomer and they will tell you that the best night skies are found when you get away from light pollution. The COVID-19 pandemic has not taken away our ability to enjoy watching the stars, but it has prevented the staff of the William M. Staerkel Planetarium at Parkland College from sharing the immersive environment of the dome with the public for the rest of 2020. Since the cycles of the sky are still in motion, the staff have strived to keep everyone informed about what they can see under dark skies or in their backyard.
All-Sky Search For Short Gravitational-Wave Bursts In The Second Advanced Ligo And Advanced Virgo Run,
2020
Andrews University
All-Sky Search For Short Gravitational-Wave Bursts In The Second Advanced Ligo And Advanced Virgo Run, Tiffany Summerscales, Ligo Scientific Collaboration And The Virgo Collaboration
Faculty Publications
We present the results of a search for short-duration gravitational-wave transients in the data from the second observing run of Advanced LIGO and Advanced Virgo. We search for gravitational-wave transients with a duration of milliseconds to approximately one second in the 32–4096 Hz frequency band with minimal assumptions about the signal properties, thus targeting a wide variety of sources. We also perform a matched-filter search for gravitational-wave transients from cosmic string cusps for which the waveform is well modeled. The unmodeled search detected gravitational waves from several binary black hole mergers which have been identified by previous analyses. No other …
Visual Orbits Of Spectroscopic Binaries With The Chara Array. Iii. Hd 8374 And Hd 24546,
2020
Georgia State University
Visual Orbits Of Spectroscopic Binaries With The Chara Array. Iii. Hd 8374 And Hd 24546, Kathryn V. Lester, Francis C. Fekel, Matthew W. Muterspaugh, Douglas R. Gies, Gail Schaefer, Chris D. Farrington, Zhao Guo, Rachel A. Matson, John D. Monnier, Theo A. Ten Brummelaar, Judit Sturmann, Samuel A. Weiss
Information Systems and Engineering Management Research Publications
We present the visual orbits of two long-period spectroscopic binary stars, HD 8374 and HD 24546, using interferometric observations acquired with the CHARA Array and the Palomar Testbed Interferometer. We also obtained new radial velocities from echelle spectra using the APO 3.5 m and Fairborn 2.0 m telescopes. By combining the visual and spectroscopic observations, we solve for the full, three-dimensional orbits and determine the stellar masses and distances to within 3% uncertainty. We then estimate the effective temperature and radius of each component star through Doppler tomography and spectral energy distribution analyses, in order to compare the observed stellar …
Absence Of Landau-Peierls Instability In The Magnetic Dual Chiral Density Wave Phase Of Dense Qcd,
2020
The University of Texas Rio Grande Valley
Absence Of Landau-Peierls Instability In The Magnetic Dual Chiral Density Wave Phase Of Dense Qcd, Efrain J. Ferrer, Vivian De La Incera
Physics & Astronomy Faculty Publications
We investigate the stability of the magnetic dual chiral density wave (MDCDW) phase of cold and dense QCD against collective low-energy fluctuations of the order parameter. The appearance of additional structures in the system free energy due to the explicit breaking of the rotational and isospin symmetries by the external magnetic field play a crucial role in the analysis. The new structures stiffen the spectrum of the thermal fluctuations in the transverse direction, thereby avoiding the Landau-Peierls instability that affects single-modulated phases at arbitrarily low temperatures. The lack of Landau-Peierls instabilities in the MDCDW phase makes this inhomogeneous phase of …
Earth-Like Planet In A Binary Star System,
2020
University of Minnesota Morris
Earth-Like Planet In A Binary Star System, Melissa Kamrowski
Scholarly Horizons: University of Minnesota, Morris Undergraduate Journal
This paper was written as a final lab report for a computer modeling class. It uses dynamical simulations to investigate the behavior of a planet with the mass and velocity magnitude of the Earth placed in a low mass binary star system, which was loosely based on the Sirius binary. The simulations are completed using gravitational force properties along with the Verlet algorithm, then the results were observed through a modeling program, in which each set was set as an animation to determine behavior. Results came from 40 strategic starting points, which were chosen to cover a large spread of …
The Hubble Space Telescope Pancet Program: An Optical To Infrared Transmission Spectrum Of Hat-P-32ab,
2020
Harvard-Smithsonian Center for Astrophysics
The Hubble Space Telescope Pancet Program: An Optical To Infrared Transmission Spectrum Of Hat-P-32ab, Munazza K. Alam, Mercedes López-Morales, Nikolay Nikolov, David K. Sing, Gregory W. Henry, Claire Baxter, Jean-Michel Désert, Joanna K. Barstow, Thomas Mikal-Evans, Vincent Bourrier, Panayotis Lavvas, Hannah R. Wakeford, Michael H. Williamson, Jorge Sanz-Forcada, Lars A. Buchhave, Ofer Cohen, Antonio García Muñoz
Information Systems and Engineering Management Research Publications
We present a 0.3−5 μm transmission spectrum of the hot Jupiter HAT-P-32Ab observed with the Space Telescope Imaging Spectrograph and Wide Field Camera 3 instruments mounted on the Hubble Space Telescope, combined with Spitzer Infrared Array Camera photometry. The spectrum is composed of 51 spectrophotometric bins with widths ranging between 150 and 400 Å, measured to a median precision of 215 ppm. Comparisons of the observed transmission spectrum to a grid of 1D radiative-convective equilibrium models indicate the presence of clouds/hazes, consistent with previous transit observations and secondary eclipse measurements. To provide more robust constraints on the planet's atmospheric properties, …
Simulating The Outer Layers Of Rapidly Rotating Stars,
2020
Sacred Heart University
Simulating The Outer Layers Of Rapidly Rotating Stars, Frank J. Robinson, Joel Tanner, Sarbani Basu
Chemistry & Physics Faculty Publications
This paper presents the results of a set of radiative hydrodynamic (RHD) simulations of convection in the near-surface regions of a rapidly rotating star. The simulations use microphysics consistent with stellar models, and include the effects of realistic convection and radiative transfer. We find that the overall effect of rotation is to reduce the strength of turbulence. The combination of rotation and radiative cooling creates a zonal velocity profile in which the motion of fluid parcels near the surface is independent of rotation. Their motion is controlled by the strong up and down flows generated by radiative cooling. The fluid …
A Remnant Planetary Core In The Hot-Neptune Desert,
2020
Swarthmore College
A Remnant Planetary Core In The Hot-Neptune Desert, D. J. Armstrong, T. A. Lopez, V. Adibekyan, R. A. Booth, E. M. Bryant, K. A. Collins, A. Esmenhuber, C. X. Huang, G. W. King, J. Lillo-Box, J. J. Lissauer, E. C. Matthews, O. Mousis, L. D. Nielsen, H. Osborn, J. Otegi, N. C. Santos, S. G. Sousa, K. G. Stassun, D. Veras, C. Ziegler, J. S. Acton, J. M. Almenara, D. R. Anderson, D. Barrado, S. C. C. Barros, D. Bayliss, C. Belardi, F. Bouchy, C. Briceño, M. Brogi, D. J. A. Brown, M. R. Burleigh, S. L. Casewell, A. Chaushev, D. R. Ciardi, K. I. Collins, K. D. Colón, B. F. Cooke, I. J. M. Crossfield, R. F. Díaz, Magali Deleuil, E. Delgado Mena, O. D. S. Demangeon, C. Dorn, X. Dumusque, P. Eigmüller, M. Fausnaugh, P. Figueira, T. Gan, S. Gandhi, S. Gill, M. R. Goad, M. N. Günther, R. Helled, S. Hojjatpanah, S. B. Howell, J. Jackman, J. S. Jenkins, J. M. Jenkins, Eric L.N. Jensen, G. M. Kennedy, D. W. Latham, N. Law, M. Lendl, M. Lozovsky, A. W. Mann, M. Moyano, J. Mccormac, F. Meru, C. Mordasini, A. Osborn, D. Pollacco, D. Queloz, L. Raynard, G. R. Ricker, P. Rowqden, A. Santerne, J. E. Schlieder, S. Seager, L. Sha, T.-G. Tan, R. H. Tilbrook, E. Ting, S. Udry, R. Vanderspek, C. A. Watson, R. G. West, P. A. Wilson, J. N. Winn, P. Wheatley, J. N. Villasenor, J. I. Vines, Z Zhan
Physics & Astronomy Faculty Works
The interiors of giant planets remain poorly understood. Even for the planets in the Solar System, difficulties in observation lead to large uncertainties in the properties of planetary cores. Exoplanets that have undergone rare evolutionary processes provide a route to understanding planetary interiors. Planets found in and near the typically barren hot-Neptune ‘desert’1,2 (a region in mass–radius space that contains few planets) have proved to be particularly valuable in this regard. These planets include HD149026b3, which is thought to have an unusually massive core, and recent discoveries such as LTT9779b4 and NGTS-4b5, on which photoevaporation has removed a substantial part …
Toi-1235 B: A Keystone Super-Earth For Testing Radius Valley Emergence Models Around Early M Dwarfs,
2020
Swarthmore College
Toi-1235 B: A Keystone Super-Earth For Testing Radius Valley Emergence Models Around Early M Dwarfs, R. Cloutier, J. E. Rodriguez, J. Irwin, D. Charbonneau, K. G. Stassun, A. Mortier, D. W. Latham, H. Isaacson, A. W. Howard, S. Udry, T. G. Wilson, C. A. Watson, M. Pinamonti, F. Lienhard, P. Giacobbe, P. Guerra, K. A. Collins, A. Bieryla, G. A. Esquerdo, E. Matthews, R. A. Matson, S. B. Howell, E. Furlan, I. J. M. Crossfield, J. G. Winters, C. Nava, K. Ment, E. D. Lopez, G. Ricker, R. Vanderspek, S. Seager, J. M. Jenkins, E. B. Ting, P. Tenenbaum, A. Sozzetti, L. Sha, D. Ségransan, J. E. Schlieder, D. Sasselov, A. Roy, P. Robertson, K. Rice, E. Poretti, G. Piotto, D. Phillips, J. Pepper, F. Pepe, E. Molinari, T. Mocnik, G. Micela, M. Mayor, A. F. Martinez Fiorenzano, F. Mallia, J. Lubin, C. Lovis, M. López-Morales, M. R. Kosiarek, J. F. Kielkopf, S. R. Kane, Eric L.N. Jensen, G. Isopi, D. Huber, M. L. Hill, A. Harutyunyan, E. Gonzales, S. Giacalone, A. Ghedina, A. Ercolino, X. Dumusque, C. D. Dressing, M. Damasso, P. A. Dalba, R. Cosentino, D. M. Conti, K. D. Colón, K. I. Collins, A. Collier Cameron, D. Ciardi, J. Christiansen, A. Chontos, M. Cecconi, D. A. Caldwell, C. Burke, L. Buchhave, C. Beichman, A. Behmard, C. Beard, J. M. Akana Murphy
Physics & Astronomy Faculty Works
Small planets on close-in orbits tend to exhibit envelope mass fractions of either effectively zero or up to a few percent depending on their size and orbital period. Models of thermally driven atmospheric mass loss and of terrestrial planet formation in a gas-poor environment make distinct predictions regarding the location of this rocky/nonrocky transition in period–radius space. Here we present the confirmation of TOI-1235 b (P = 3.44 days, ${r}_{{\rm{p}}}={1.738}_{-0.076}^{+0.087}$ ${R}_{\oplus }$), a planet whose size and period are intermediate between the competing model predictions, thus making the system an important test case for emergence models of the rocky/nonrocky transition …
Precise Mass And Radius Of A Transiting Super-Earth Planet Orbiting The M Dwarf Toi-1235: A Planet In The Radius Gap?,
2020
Swarthmore College
Precise Mass And Radius Of A Transiting Super-Earth Planet Orbiting The M Dwarf Toi-1235: A Planet In The Radius Gap?, P. Bluhm, R. Luque, N. Espinoza, E. Pallé, J. A. Caballero, S. Dreizler, J. H. Livingston, S. Mathur, A. Quirrenbach, S. Stock, V. Van Eylen, G. Nowak, E. D. López, S. Csizmadia, M. R. Zapatero Osorio, P. Schöfer, J. Lillo-Box, M. Oshagh, E. González-Álvarez, P. J. Amado, D. Barrado, V. J. S. Béjar, B. Cale, P. Chaturvedi, M. El Mufti, A. Ercolino, M. Fridlund, E. Gaidos, R. A. García, I. Georgieva, L. González-Cuesta, P. Guerra, A. P. Hatzes, T. Henning, E. Herrero, D. Hidalgo, G. Isopi, S. V. Jeffers, J. M. Jenkins, Eric L.N. Jensen, P. Kábath, A. Kaminski, J. Kemmer, J. Korth, D. Kossakowski, M. Kürster, M. Lafarga, F. Mallia, D. Montes, J. C. Morales, M. Morales-Calderón, F Murgas, N. Narita, V. M. Passegger, S. Pedraz, C. M. Persson, P. Plavchan, H. Rauer, S. Redfield, S. Reffert, A. Reiners, I. Ribas, G. R. Ricker, C. Rodríguez-López, A. R. G. Santos, S. Seager, M. Schlecker, A. Schweitzer, Y. Shan, M. G. Soto, J. Subjak, L. Tal-Or, T. Trifonov, S. Vanaverbeke, R. Vanderspek, J. Wittrock, M. Zechmeister, F. Zohrabi
Physics & Astronomy Faculty Works
We report the confirmation of a transiting planet around the bright weakly active M0.5 V star TOI-1235 (TYC 4384–1735–1, V ≈ 11.5 mag), whose transit signal was detected in the photometric time series of sectors 14, 20, and 21 of the TESS space mission. We confirm the planetary nature of the transit signal, which has a period of 3.44 d, by using precise RV measurements with the CARMENES, HARPS-N, and iSHELL spectrographs, supplemented by high-resolution imaging and ground-based photometry. A comparison of the properties derived for TOI-1235 b with theoretical models reveals that the planet has a rocky composition, with …
