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We present Lenstronomy, a multi-purpose open-source gravitational lens modeling python package.
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Vegetti, S., Lagattuta, D. J., McKean, J. P., Auger, M. W., Fassnacht, C. D., Koopmans, L. V. E., Jan. 2012. Gravitational detection of a low-mass dark satellite galaxy at cosmological distance. Nature481, 341–343
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Hezaveh, Y. D., Levasseur, L. P., Marshall, P. J., Aug. 2017. Fast automated analysis of strong gravitational lenses with convolutional neural networks. Nature548, 555–557
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Birrer, S., Amara, A., Refregier, A., Nov. 2015. Gravitational Lens Modeling with Basis Sets. ApJ813, 102
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Ostrovski, F., McMahon, R. G., Connolly, A. J., Lemon, C. A., Auger, M. W., Banerji, M., Hung, J. M., Koposov, S. E., Lidman, C. E., Reed, S. L., Allam, S., Benoit-Lévy, A., Bertin, E., Brooks, D., Buckley-Geer, E., Carnero Rosell, A., Carrasco Kind, M., Carretero, J., Cunha, C. E., da Costa, L. N., Desai, S., Diehl, H. T., Dietrich, J. P., Evrard, A. E., Finley, D. A., Flaugher, B., Fosalba, P., Frieman, J., Gerdes, D. W., Goldstein, D. A., Gruen, D., Gruendl, R. A., Gutierrez, G., Honscheid, K., James, D. J., Kuehn, K., Kuropatkin, N., Lima, M., Lin, H., Maia, M. A. G., Marshall, J. L., Martini, P., Melchior, P., Miquel, R., Ogando, R., Plazas Malagón, A., Reil, K., Romer, K., Sanchez, E., Santiago, B., Scarpine, V., Sevilla-Noarbe, I., Soares-Santos, M., Sobreira, F., Suchyta, E., Tarle, G., Thomas, D., Tucker, D. L., Walker, A. R., Mar. 2017. VDES J2325-5229 a z = 2.7 gravitationally lensed quasar discovered using morphology-independent supervised machine learning. MNRAS465, 4325–4334
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Schechter, P. L., Morgan, N. D., Chehade, B., Metcalfe, N., Shanks, T., McDonald, M., May 2017. First Lensed Quasar Systems from the VST-ATLAS Survey: One Quad, Two Doubles, and Two Pairs of Lensless Twins. AJ153, 219
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Ding, X., Treu, T., Shajib, A. J., Xu, D., Chen, G. C.-F., More, A., Despali, G., Frigo, M., Fassnacht, C. D., Gilman, D., Hilbert, S., Marshall, P. J., Sluse, D., Vegetti, S., Jan. 2018. Time Delay Lens Modeling Challenge: I. Experimental Design. ArXiv e-prints
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Gilman, D., Birrer, S., Treu, T., Keeton, C. R., Nierenberg, A., Nov. 2018. Probing the nature of dark matter by forward modelling flux ratios in strong gravitational lenses. MNRAS481, 819–834
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Grillo, C., Rosati, P., Suyu, S. H., Balestra, I., Caminha, G. B., Halkola, A., Kelly, P. L., Lombardi, M., Mercurio, A., Rodney, S. A., Treu, T., Jun. 2018. Measuring the Value of the Hubble Constant “à la Refsdal”. ApJ860, 94
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Lemon, C. A., Auger, M. W., McMahon, R. G., Ostrovski, F., Mar. 2018. Gravitationally Lensed Quasars in Gaia: II. Discovery of 24 Lensed Quasars. ArXiv e-prints
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Suyu, S. H., Chang, T.-C., Courbin, F., Okumura, T., Aug. 2018. Cosmological Distance Indicators. Space Sci. Rev.214, 91
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Wertz, O., Orthen, B., Jan. 2018. pySPT: a package dedicated to the source position transformation. ArXiv e-prints
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