Lens Modeling of STRIDES Strongly Lensed Quasars Using Neural Posterior Estimation

被引:0
作者
Erickson, Sydney [1 ,2 ]
Wagner-Carena, Sebastian [3 ,4 ]
Marshall, Phil [1 ,2 ]
Millon, Martin [1 ]
Birrer, Simon [5 ]
Roodman, Aaron [1 ,2 ]
Schmidt, Thomas [6 ]
Treu, Tommaso [6 ]
Schuldt, Stefan [7 ,8 ]
Shajib, Anowar J. [9 ,10 ,11 ]
Venkatraman, Padma [1 ,12 ]
机构
[1] Stanford Univ, Kavli Inst Particle Astrophys & Cosmol, Dept Phys, Stanford, CA 94305, USA
[2] SLAC Natl Accelerator Lab, Menlo Pk, CA, USA
[3] NYU, Ctr Data Sci, New York, NY, USA
[4] Flatiron Inst, Ctr Computat Astrophys, New York, NY, USA
[5] SUNY Stony Brook, Dept Phys & Astron, Stony Brook, NY, USA
[6] Univ Calif Los Angeles, Dept Phys & Astron, Los Angeles, CA, USA
[7] Univ Milano, Dipartimento Fis, Milan, Italy
[8] NAF IASF Milano, Milano, Italy
[9] Univ Chicago, Kavli Inst Cosmol Phys, Chicago, IL, USA
[10] Univ Chicago, Dept Astron & Astrophys, Chicago, IL, USA
[11] Independent Univ, Ctr Astron Space Sci & Astrophys, Dhaka 1229, Bangladesh
[12] Univ Illinois Urbana Champaign, Dept Astron, Champaign, IL, USA
关键词
STRONG GRAVITATIONAL LENSES; INFERENCE; NETWORKS; GALAXIES; PARAMETERS; ACCURATE; STELLAR; IMAGES;
D O I
10.3847/1538-3881/add99f
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Strongly lensed quasars can be used to constrain cosmological parameters through time-delay cosmography. Models of the lens masses are a necessary component of this analysis. To enable time-delay cosmography from a sample of O(103) lenses, which will soon become available from surveys like the Rubin Observatory's Legacy Survey of Space and Time and the Euclid Wide Survey, we require fast and standardizable modeling techniques. To address this need, we apply neural posterior estimation (NPE) for modeling galaxy-scale strongly lensed quasars from the Strong Lensing Insights into the Dark Energy Survey (STRIDES) sample. NPE brings two advantages: speed and the ability to implicitly marginalize over nuisance parameters. We extend this method by employing sequential NPE to increase precision of mass model posteriors. We then fold individual lens models into a hierarchical Bayesian inference to recover the population distribution of lens mass parameters, accounting for out-of-distribution shift. After verifying our method using simulated analogs of the STRIDES lens sample, we apply our method to 14 Hubble Space Telescope single-filter observations. We find the population mean of the power-law elliptical mass distribution slope, gamma lens, to be M gamma lens=2.13 +/- 0.06 . Our result represents the first population-level constraint for these systems. This population-level inference from fully automated modeling is an important stepping stone toward cosmological inference with large samples of strongly lensed quasars.
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页数:21
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共 64 条
[1]   Cosmology intertwined: A review of the particle physics, astrophysics, and cosmology associated with the cosmological tensions and anomalies [J].
Abdalla, Elcio ;
Abellan, Guillermo Franco ;
Aboubrahim, Amin ;
Agnello, Adriano ;
Akarsu, Ozgur ;
Akrami, Yashar ;
Alestas, George ;
Aloni, Daniel ;
Amendola, Luca ;
Anchordoqui, Luis A. ;
Anderson, Richard I. ;
Arendse, Nikki ;
Asgari, Marika ;
Ballardini, Mario ;
Bargerx, Vernon ;
Basilakos, Spyros ;
Batista, Ronaldo C. ;
Battistelli, Elia S. ;
Battye, Richard ;
Benetti, Micol ;
Benisty, David ;
Berlin, Asher ;
de Bernardis, Paolo ;
Berti, Emanuele ;
Bidenko, Bohdan ;
Birrer, Simon ;
Blakeslee, John P. ;
Boddy, Kimberly K. ;
Bom, Clecio R. ;
Bonilla, Alexander ;
Borghi, Nicola ;
Bouchet, Francois R. ;
Braglia, Matteo ;
Buchert, Thomas ;
Buckley-Geer, Elizabeth ;
Calabrese, Erminia ;
Caldwell, Robert R. ;
Camarena, David ;
Capozziello, Salvatore ;
Casertano, Stefano ;
Chen, Angela ;
Chen, Geoff C-F ;
Chen, Hsin-Yu ;
Chluba, Jens ;
Chudaykin, Anton ;
Cicoli, Michele ;
Copi, Craig J. ;
Courbin, Fred ;
Cyr-Racine, Francis-Yan ;
Czerny, Bozena .
JOURNAL OF HIGH ENERGY ASTROPHYSICS, 2022, 34 :49-211
[2]  
Abell P. A., 2009, arXiv
[3]   DESI 2024 VI: cosmological constraints from the measurements of baryon acoustic oscillations [J].
Adame, A. G. ;
Aguilar, J. ;
Ahlen, S. ;
Alam, S. ;
Alexander, D. M. ;
Alvarez, M. ;
Alves, O. ;
Anand, A. ;
Andrade, U. ;
Armengaud, E. ;
Avila, S. ;
Aviles, A. ;
Awan, H. ;
Bahr-Kalus, B. ;
Bailey, S. ;
Baltay, C. ;
Bault, A. ;
Behera, J. ;
BenZvi, S. ;
Bera, A. ;
Beutler, F. ;
Bianchi, D. ;
Blake, C. ;
Blum, R. ;
Brieden, S. ;
Brodzeller, A. ;
Brooks, D. ;
Buckley-Geer, E. ;
Burtin, E. ;
Calderon, R. ;
Canning, R. ;
Rosell, A. Carnero ;
Cereskaite, R. ;
Cervantes-Cota, J. L. ;
Chabanier, S. ;
Chaussidon, E. ;
Chaves-Montero, J. ;
Chen, S. ;
Chen, X. ;
Claybaugh, T. ;
Cole, S. ;
Cuceu, A. ;
Davis, T. M. ;
Dawson, K. ;
de la Macorra, A. ;
de Mattia, A. ;
Deiosso, N. ;
Dey, A. ;
Dey, B. ;
Ding, Z. .
JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS, 2025, (02)
[4]  
Alonso D, 2021, Arxiv, DOI arXiv:1809.01669
[5]   THE SLOAN LENS ACS SURVEY. X. STELLAR, DYNAMICAL, AND TOTAL MASS CORRELATIONS OF MASSIVE EARLY-TYPE GALAXIES [J].
Auger, M. W. ;
Treu, T. ;
Bolton, A. S. ;
Gavazzi, R. ;
Koopmans, L. V. E. ;
Marshall, P. J. ;
Moustakas, L. A. ;
Burles, S. .
ASTROPHYSICAL JOURNAL, 2010, 724 (01) :511-525
[6]   Fast calculation of a family of elliptical gravitational lens models [J].
Barkana, R .
ASTROPHYSICAL JOURNAL, 1998, 502 (02) :531-537
[7]   Time-Delay Cosmography: Measuring the Hubble Constant and Other Cosmological Parameters with Strong Gravitational Lensing [J].
Birrer, S. ;
Millon, M. ;
Sluse, D. ;
Shajib, A. J. ;
Courbin, F. ;
Erickson, S. ;
Koopmans, L. V. E. ;
Suyu, S. H. ;
Treu, T. .
SPACE SCIENCE REVIEWS, 2024, 220 (05)
[8]   TDCOSMO. IV. Hierarchical time-delay cosmography - joint inference of the Hubble constant and galaxy density profiles [J].
Birrer, S. ;
Shajib, A. J. ;
Galan, A. ;
Millon, M. ;
Treu, T. ;
Agnello, A. ;
Auger, M. ;
Chen, G. C. -F. ;
Christensen, L. ;
Collett, T. ;
Courbin, F. ;
Fassnacht, C. D. ;
Koopmans, L. V. E. ;
Marshall, P. J. ;
Park, J. -W. ;
Rusu, C. E. ;
Sluse, D. ;
Spiniello, C. ;
Suyu, S. H. ;
Wagner-Carena, S. ;
Wong, K. C. ;
Barnabe, M. ;
Bolton, A. S. ;
Czoske, O. ;
Ding, X. ;
Frieman, J. A. ;
Van de Vyvere, L. .
ASTRONOMY & ASTROPHYSICS, 2020, 643
[9]  
Birrer S., 2021, J. Open Source Softw, V6, P3283, DOI DOI 10.21105/JOSS.03283
[10]   lenstronomy: Multi-purpose gravitational lens modelling software package [J].
Birrer, Simon ;
Amara, Adam .
PHYSICS OF THE DARK UNIVERSE, 2018, 22 :189-201