Deepthi Gorthi

ORCID: 0000-0002-0829-167X
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About
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Research Areas
  • Radio Astronomy Observations and Technology
  • Astrophysics and Cosmic Phenomena
  • Antenna Design and Optimization
  • Radio Wave Propagation Studies
  • Electromagnetic Compatibility and Measurements
  • Galaxies: Formation, Evolution, Phenomena
  • Superconducting and THz Device Technology
  • Particle Accelerators and Free-Electron Lasers
  • Millimeter-Wave Propagation and Modeling
  • Microwave Engineering and Waveguides
  • Astronomical Observations and Instrumentation
  • Soil Moisture and Remote Sensing
  • Gyrotron and Vacuum Electronics Research
  • Astronomy and Astrophysical Research
  • Pulsed Power Technology Applications
  • Optical measurement and interference techniques
  • Advanced Wireless Communication Techniques
  • Scientific Research and Discoveries
  • Telecommunications and Broadcasting Technologies
  • Advanced Optical Sensing Technologies
  • Electromagnetic Compatibility and Noise Suppression
  • Particle accelerators and beam dynamics
  • Photonic and Optical Devices
  • Radio Frequency Integrated Circuit Design
  • Pulsars and Gravitational Waves Research

University of California, Berkeley
2017-2025

Massachusetts Institute of Technology
2023

National Radio Astronomy Observatory
2021

Abstract We report upper limits on the Epoch of Reionization 21 cm power spectrum at redshifts 7.9 and 10.4 with 18 nights data (∼36 hr integration) from Phase I Hydrogen Array (HERA). The show evidence for systematics that can be largely suppressed systematic models down to a dynamic range ∼10 9 respect peak foreground power. This yields 95% confidence limit <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" overflow="scroll"> <mml:msubsup> <mml:mrow> <mml:mi...

10.3847/1538-4357/ac1c78 article EN cc-by The Astrophysical Journal 2022-02-01

Abstract Recently, the Hydrogen Epoch of Reionization Array (HERA) has produced experiment’s first upper limits on power spectrum 21 cm fluctuations at z ∼ 8 and 10. Here, we use several independent theoretical models to infer constraints intergalactic medium (IGM) galaxies during epoch reionization from these limits. We find that IGM must have been heated above adiabatic-cooling threshold by 8, uncertainties about ionization radio background. Combining HERA with complementary observations...

10.3847/1538-4357/ac2ffc article EN cc-by The Astrophysical Journal 2022-01-01
The HERA Collaboration Zara Abdurashidova Tyrone Adams James E. Aguirre Paul Alexander Zaki S. Ali and 89 more Rushelle Baartman Yanga Balfour Rennan Barkana Adam P. Beardsley G. Bernardi Tashalee S. Billings Judd D. Bowman Richard F. Bradley Daniela Breitman Philip Bull Jacob Burba Steve Carey C. L. Carilli Carina Cheng Samir Choudhuri David R. DeBoer Eloy de Lera Acedo Matt Dexter Joshua S. Dillon John Ely Aaron Ewall‐Wice Nicolas Fagnoni Anastasia Fialkov Randall Fritz Steven R. Furlanetto Kingsley Gale‐Sides Hugh Garsden Brian Glendenning Adélie Gorce Deepthi Gorthi Bradley Greig Jasper Grobbelaar Ziyaad Halday B. J. Hazelton Stefan Heimersheim Jacqueline N. Hewitt J. Hickish Daniel Jacobs Austin Julius Nicholas S. Kern Joshua Kerrigan Piyanat Kittiwisit Saul A. Kohn Matthew Kolopanis Adam Lanman Paul La Plante David Lewis Adrian Liu Anita Loots Yin-Zhe Ma David H. E. MacMahon Lourence Malan Keith Malgas Cresshim Malgas Matthys Maree Bradley Marero Zachary E. Martinot Lisa McBride Andrei Mesinger Jordan Mirocha Mathakane Molewa M. F. Morales Tshegofalang Mosiane Julián B. Muñoz Steven Murray Vighnesh Nagpal Abraham R. Neben Bojan Nikolic Chuneeta D. Nunhokee Hans Nuwegeld Aaron R. Parsons Robert Pascua Nipanjana Patra Samantha Pieterse Yuxiang Qin N. Razavi‐Ghods James Robnett Kathryn Rosie Mário G. Santos Peter Sims Saurabh Singh Craig Smith Hilton Swarts Jianrong Tan Nithyanandan Thyagarajan Michael J. Wilensky Peter K. G. Williams Pieter van Wyngaarden Haoxuan Zheng

Abstract We report the most sensitive upper limits to date on 21 cm epoch of reionization power spectrum using 94 nights observing with Phase I Hydrogen Epoch Reionization Array (HERA). Using similar analysis techniques as in previously reported limits, we find at 95% confidence that Δ 2 ( k = 0.34 h Mpc −1 ) ≤ 457 mK z 7.9 and 0.36 3496 10.4, an improvement by a factor 2.1 2.6, respectively. These are mostly consistent thermal noise over wide range after our data quality cuts, despite...

10.3847/1538-4357/acaf50 article EN cc-by The Astrophysical Journal 2023-03-01

Abstract This paper presents the design and deployment of Hydrogen Epoch Reionization Array (HERA) phase II system. HERA is designed as a staged experiment targeting 21 cm emission measurements Reionization. First results from I array are published early 2022, system nearing completion. We describe discuss progress on commissioning future upgrades. As designated Square Kilometre pathfinder instrument, we also show number “case studies” that investigate systematics seen while system, which...

10.1088/1538-3873/ad3122 article EN cc-by Publications of the Astronomical Society of the Pacific 2024-04-01

We present a study of internal reflection and cross coupling systematics in Phase I the Hydrogen Epoch Reionization Array (HERA). In companion paper, we outlined mathematical formalism for such presented algorithms modeling removing them from data. this work, apply these techniques to data HERA's first observing season as method demonstration. The show evidence that, without removal, would hinder detection 21 cm power spectrum targeted EoR line-of-sight modes range 0.2 < k_parallel 0.5\ h^-1...

10.3847/1538-4357/ab5e8a article EN The Astrophysical Journal 2020-01-09

ABSTRACT In 21-cm cosmology, precision calibration is key to the separation of neutral hydrogen signal from very bright but spectrally smooth astrophysical foregrounds. The Hydrogen Epoch Reionization Array (HERA), an interferometer specialized for cosmology and now under construction in South Africa, was designed be largely calibrated using self-consistency repeated measurements same interferometric modes. This technique, known as redundant-baseline resolves most internal degrees freedom...

10.1093/mnras/staa3001 article EN Monthly Notices of the Royal Astronomical Society 2020-09-29

Abstract We discuss absolute calibration strategies for Phase I of the Hydrogen Epoch Reionization Array (HERA), which aims to measure cosmological 21 cm signal from Reionization. HERA is a drift-scan array with 10° wide field view, meaning bright, well-characterized point-source transits are scarce. This, combined HERA’s redundant sampling uv plane and modest angular resolution instrument, make traditional sky-based self-calibration techniques difficult implement high dynamic range....

10.3847/1538-4357/ab67bc article EN The Astrophysical Journal 2020-02-19

Radio Frequency Interference (RFI) is an ever-present limiting factor among radio telescopes even in the most remote observing locations. When looking to retain maximum amount of sensitivity and reduce contamination for Epoch Reionization studies, identification removal RFI especially important. In addition improved identification, we must also take into account computational efficiency RFI-Identification algorithm as interferometer arrays such Hydrogen Array grow larger number receivers. To...

10.1093/mnras/stz1865 article EN Monthly Notices of the Royal Astronomical Society 2019-07-05

ABSTRACT The detection of the Epoch Reionization (EoR) delay power spectrum using a ‘foreground avoidance method’ highly depends on instrument chromaticity. systematic effects induced by radio telescope spread foreground signal in domain, which contaminates EoR window theoretically observable. Applied to Hydrogen Array (HERA), this paper combines detailed electromagnetic and electrical simulations order model chromatic instrument, quantify its frequency time responses. In particular,...

10.1093/mnras/staa3268 article EN Monthly Notices of the Royal Astronomical Society 2020-10-20

We describe the validation of HERA Phase I software pipeline by a series modular tests, building up to an end-to-end simulation. The philosophy this approach is validate and algorithms used in upper limit analysis on wholly synthetic data satisfying assumptions that analysis, not addressing whether actual meet these assumptions. discuss organization approach, specific tests performed, construction simulations. explicitly limitations scope current simulation effort. With mock visibility...

10.3847/1538-4357/ac32cd article EN cc-by The Astrophysical Journal 2022-01-01

Abstract The precise characterization and mitigation of systematic effects is one the biggest roadblocks impeding detection fluctuations cosmological 21 cm signals. Missing data in radio experiments, often due to frequency interference (RFI), pose a particular challenge power spectrum analysis as this could lead ringing bright foreground modes Fourier space, heavily contaminating Here we show that problem missing becomes even more arduous presence effects. Using realistic numerical...

10.3847/1538-4357/ad9b91 article EN cc-by The Astrophysical Journal 2025-01-27

ABSTRACT Detection of the faint 21 cm line emission from Cosmic Dawn and Epoch Reionization will require not only exquisite control over instrumental calibration systematics to achieve necessary dynamic range observations but also validation analysis techniques demonstrate their statistical properties signal loss characteristics. A key ingredient in achieving this is ability perform high-fidelity simulations kinds data that are produced by large, many-element, radio interferometric arrays...

10.1093/rasti/rzaf001 article EN cc-by RAS Techniques and Instruments 2025-01-01

The key challenge in the observation of redshifted 21-cm signal from cosmic reionization is its separation much brighter foreground emission. Such relies on different spectral properties two components, although, real life, intrinsic spectrum often corrupted by instrumental response, inducing systematic effects that can further jeopardize measurement signal. In this paper, we use Gaussian Process Regression to model both emission and systematics $\sim 2$ hours data Hydrogen Epoch...

10.1093/mnras/staa1331 article EN Monthly Notices of the Royal Astronomical Society 2020-01-01

Radio Frequency Interference (RFI) is one of the systematic challenges preventing 21cm interferometric instruments from detecting Epoch Reionization. To mitigate effects RFI on data analysis pipelines, numerous inpaint techniques have been developed to restore corrupted data. We examine qualitative and quantitative errors introduced into visibilities power spectrum due inpainting. perform our simulated as well real Hydrogen Reionization Array (HERA) Phase 1 upper limits. also introduce a...

10.1093/mnras/stad441 article EN Monthly Notices of the Royal Astronomical Society 2023-02-10

Characterizing the epoch of reionization (EoR) at z≳6 via redshifted 21 cm line neutral Hydrogen (H i) is critical to modern astrophysics and cosmology, thus a key science goal many current planned low-frequency radio telescopes. The primary challenge detecting this signal overwhelmingly bright foreground emission these frequencies, placing stringent requirements on knowledge instruments inaccuracies in analyses. Results from experiments have largely been limited not by thermal sensitivity...

10.1103/physrevd.102.022002 article EN Physical review. D/Physical review. D. 2020-07-01

Interferometric experiments designed to detect the highly redshifted 21-cm signal from neutral hydrogen are producing increasingly stringent constraints on power spectrum, but some k-modes remain systematics-dominated. Mutual coupling is a major systematic that must be overcome in order signal, and simulations reproduce effects seen data can guide strategies for mitigating mutual coupling. In this paper, we analyse 12 nights of Hydrogen Epoch Reionization Array compare against include...

10.48550/arxiv.2406.08549 preprint EN arXiv (Cornell University) 2024-06-12

The 21 cm transition from neutral Hydrogen promises to be the best observational probe of Epoch Reionisation (EoR). This has led construction low-frequency radio interferometric arrays, such as Reionization Array (HERA), aimed at systematically mapping this emission for first time. Precision calibration, however, is a requirement in observations. Due spatial compactness HERA, array prone effects mutual coupling, which inevitably lead non-smooth calibration errors that contaminate data. When...

10.48550/arxiv.2407.20923 preprint EN arXiv (Cornell University) 2024-07-30

Combining the visibilities measured by an interferometer to form a cosmological power spectrum is complicated process. In delay-based analysis, mapping between instrumental and space not one-to-one relation. Instead, neighbouring modes contribute at one point, with their respective contributions encoded in window functions. To better understand interferometer, we assess impact of instrument characteristics analysis choices on these Focusing Hydrogen Epoch Reionization Array (HERA) as case...

10.1093/mnras/stad090 article EN Monthly Notices of the Royal Astronomical Society 2023-01-11

Precise measurements of the 21 cm power spectrum are crucial for understanding physical processes hydrogen reionization. Currently, this probe is being pursued by low-frequency radio interferometer arrays. As these experiments come closer to making a first detection signal, error estimation will play an increasingly important role in setting robust measurements. Using delay approach, we have produced critical examination different ways that one can estimate bars on spectrum. We do through...

10.3847/1538-4365/ac0533 article EN The Astrophysical Journal Supplement Series 2021-08-01

As current- and next-generation astronomical instruments come online, they will generate an unprecedented deluge of data. Analyzing these data in real time presents unique conceptual computational challenges, their long-term storage archiving is scientifically essential for generating reliable, reproducible results. We present here the real-time processing (RTP) system Hydrogen Epoch Reionization Array (HERA), a radio interferometer endeavoring to provide first detection highly redshifted 21...

10.1016/j.ascom.2021.100489 article EN cc-by Astronomy and Computing 2021-07-01

This paper presents the design and deployment of Hydrogen Epoch Reionization Array (HERA) phase II system. HERA is designed as a staged experiment targeting 21 cm emission measurements Reionization. First results from I array are published early 2022, system nearing completion. We describe discuss progress on commissioning future upgrades. As designated Square Kilometer (SKA) pathfinder instrument, we also show number "case studies" that investigate systematics seen while system, which may...

10.48550/arxiv.2401.04304 preprint EN other-oa arXiv (Cornell University) 2024-01-01

Radio interferometers targeting the 21cm brightness temperature fluctuations at high redshift are subject to systematic effects that operate over a range of different timescales. These can be isolated by designing appropriate Fourier filters in fringe-rate (FR) space, pair local sidereal time (LST). Applications FR filtering include separating correlated with rotating sky vs. those relative ground, down-weighting emission primary beam sidelobes, and suppressing noise. causes noise...

10.48550/arxiv.2402.08659 preprint EN arXiv (Cornell University) 2024-02-13

Abstract Observations with radio arrays that target the 21-cm signal originating from early Universe suffer a variety of systematic effects. An important class these are reflections and spurious couplings between antennas. We apply Hamiltonian Monte Carlo sampler to modelling mitigation systematics in simulated Hydrogen Epoch Reionisation Array (HERA) data. This method allows us form statistical uncertainty estimates for both our models recovered visibilities, which is an ingredient...

10.1093/mnras/stae2242 article EN cc-by Monthly Notices of the Royal Astronomical Society 2024-09-27
Hugh Garsden Philip Bull Michael J. Wilensky Zuhra Abdurashidova Tyrone Adams and 92 more James E. Aguirre Paul Alexander Zaki S. Ali Rushelle Baartman Yanga Balfour Adam P. Beardsley Lindsay M. Berkhout G. Bernardi Tashalee S. Billings Judd D. Bowman Richard F. Bradley Jacob Burba Steven Carey C. L. Carilli Kai-Feng Chen Carina Cheng Samir Choudhuri David R. DeBoer Eloy de Lera Acedo Matt Dexter Joshua S. Dillon Scott Dynes Nico Eksteen John Ely Aaron Ewall‐Wice Nicolas Fagnoni Randall Fritz Steven R. Furlanetto Kingsley Gale‐Sides B. K. Gehlot Abhik Ghosh Brian Glendenning Adélie Gorce Deepthi Gorthi Bradley Greig Jasper Grobbelaar Ziyaad Halday B. J. Hazelton Jacqueline N. Hewitt J. Hickish Tian Huang Daniel Jacobs Alec Josaitis Austin Julius MacCalvin Kariseb Nicholas S. Kern Joshua Kerrigan Honggeun Kim Piyanat Kittiwisit Saul A. Kohn Matthew Kolopanis Adam Lanman Paul La Plante Adrian Liu Anita Loots Yin-Zhe Ma David H. E. MacMahon Lourence Malan Cresshim Malgas Keith Malgas Bradley Marero Zachary E. Martinot Andrei Mesinger Mathakane Molewa M. F. Morales Tshegofalang Mosiane Steven Murray Abraham R. Neben Bojan Nikolic Chuneeta D. Nunhokee Hans Nuwegeld Aaron R. Parsons Robert Pascua Nipanjana Patra Samantha Pieterse Yuxiang Qin Eleanor Rath N. Razavi‐Ghods Daniel Riley James Robnett Kathryn Rosie Mário G. Santos Peter Sims Saurabh Singh Dara Storer Hilton Swarts Jianrong Tan Nithyanandan Thyagarajan Pieter van Wyngaarden Peter K. G. Williams Zhilei Xu Haimei Zheng

ABSTRACT Radio interferometers targeting the 21cm brightness temperature fluctuations at high redshift are subject to systematic effects that operate over a range of different time-scales. These can be isolated by designing appropriate Fourier filters in fringe-rate (FR) space, pair local sidereal time. Applications FR filtering include separating correlated with rotating sky versus those relative ground, down-weighting emission primary beam sidelobes, and suppressing noise. causes noise...

10.1093/mnras/stae2541 article EN cc-by Monthly Notices of the Royal Astronomical Society 2024-11-12
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