Ширококутний Стокс-поляриметр для мережі телескопів BOOTES. Оптичний та механічний дизайн
DOI:
https://doi.org/10.15407/knit2024.02.093Ключові слова:
Cтокс-поляриметр, поляризація, телескопАнотація
Розглянуто зображуючий поляриметр EDIPO (Efficient & Dedicated wide-field Imaging Polarimeter), який у комбінації з астрономічними телескопами мережі BOOTES (Burst Observer and Transient Exploring System) призначений для дослідження поляризаційних особливостей швидкоплинних процесів післясвітіння гамма-спалахів (Gamma-ray burst – GRB). Конструкція поляриметра дозволяє встановлювати його на телескопи мережі з діаметром головного дзеркала до 1.4 м. Поляриметр спроектовано для проведення аналізу параметрів поляризації повністю та частково лінійно поляризованого випромінювання у спектральному діапазоні 450 – 1000 нм. Аналізатор поляризації поляриметра не містить рухомих елементів і дозволяє проводити вимірювання параметрів Стокса I, Q, U випромінювання у полі зору 30´х30´ одномоментно для однієї спектральної смуги робочого спектрального діапазону. Оптичну частину поляриметра без спектральних фільтрів та аналізатора поляризації виготовлено, зібрано та випробувано на телескопі з діаметром дзеркала 1.23 м. Наведено проект процедури поляриметричного калібрування системи поляриметр-телескоп.
Посилання
Afanasiev V. L. Shablovinskaya E. S., Uklein R. I., Malygin E. A. (2021). Stokes-Polarimeter for 1-m Telescope. Astrophys. Bull., 76(1), 102-108.
https://doi.org/10.1134/S1990341321010028
Angel J. R. P., Stockman H. S. (1980). Optical and infrared polarization of active extragalactic objects. Annu. Rev. Astron.and Astrophys., 18, 321-361.
https://doi.org/10.1146/annurev.aa.18.090180.001541
Bauer M., Grießbach D., Hermerschmidt A., Krüger S., Scheele M., Schischmanow A. (2008). Geometrical camera calibration with diffractive optical elements. Opt. Express, 16, 20241-20248.
https://doi.org/10.1364/OE.16.020241
Bret-Dibat T., Andre Y., Laherrere J. M. (1995). Preflight calibration of the POLDER instrument. Proc. SPIE, 2553, 218-231.
https://doi.org/10.1117/12.221357
Cairns B., Russell E. E., Travis L. D. (1999). Research Scanning Polarimeter: calibration and ground-based measurements. Proc. SPIE, 3754, 186-196.
https://doi.org/10.1117/12.366329
C astro-Tirado A. J., Cunniffe R., de Ugarte Postigo A., Jelínek M., Vitek S., Kubánek P., Gorosabel J., Castillo Carrión S., Mateo Sanguino T. J., Riva A., Conconi P., di Caprio V., Zerbi F., Amado P., Cárdenas C., Claret A., Guziy S., Martín-Ruiz S., Sánchez M. A., García Teodoro P., Castro Cerón J. M., Díaz Verdejo J., Hudec R., López Soler J. M., Berná Galiano J. Á., Casares J., Fabregat J., Páta P., Sánchez Fernández C., Sabau-Graziati M. D., Trigo-Rodríguez J. M., Vitali F. (2006). BOOTES-IR: a robotic nIR astronomical observatory devoted to follow-up of transient phenomena. Proc. SPIE, 6267, 62670I.
https://doi.org/10.1117/12.671579
Castro-Tirado A. J., Soldán J., Bernas M., Páta P., Rezek T., Hudec R., Sanguino T. M., de la Morena B., Berná J. A., Rodríguez J., Peña A., Gorosabel J., Más-Hesse J. M., Giménez A. (1999). The Burst Observer and Optical Transient Exploring System (BOOTES). Astron. and Astrophys. Suppl. Ser., 138, 583-585.
https://doi.org/10.1051/aas:1999362
Chen L. G., Zheng X. B., Hong J., Qiao Y. L., Wang Y. J. (2010). A novel method for adjusting CCD camera in geometrical calibration based on a two-dimensional turntable. Optik, 121, 486-489.
https://doi.org/10.1016/j.ijleo.2008.08.004
Chipman R. A., Lam W. S. T., Young G. (2018). Polarized Light and Optical Systems. CRC Press, Taylor & Francis Group. Ser.: Optical Sciences and Applications of Light, 1036 p. ISBN 9781351129121.
https://doi.org/10.1201/9781351129121
Collett E. (2005). Field Guide to Polarization. SPIE Press, 134 p. ISBN: 9780819458681
https://doi.org/10.1117/3.626141
Collins P., Redfern R. M., Sheeha B. (2008). Design, Construction and Calibration of the Galway Astronomical Stokes Polarimeter (GASP). AIP Conf. Proc., 984, 241-246.
https://doi.org/10.1063/1.2896936
Crutcher R. M., Wandelt B. D., Heiles C., Falgarone E., Troland T. H. (2010). Magnetic Fields in Interstellar Clouds from Zeeman Observations: Inference of Total Field Strengths by Bayeslan Analysis. Astrophys. J., 725, 466-479.
https://doi.org/10.1088/0004-637X/725/1/466
Devogèle M., Cellino A., Bagnulo S., Rivet J. P., Bendjoya P., Abe L., Pernechele C., Massone G., Vernet D., Tanga P., Dimur C. (2017). The Calern Asteroid Polarimetric Survey using the Torino polarimeter: assessment of instrument performances and first scientific results. Mon. Notic. Roy. Astron. Soc., 465, 4335-4347.
https://doi.org/10.1093/mnras/stw2952
Fishman G. J., Meegan C. A. (1995). Gamma-Ray Bursts. Annu. Rev. Astron. and Astrophys., 33, 415-458.
https://doi.org/10.1146/annurev.aa.33.090195.002215
Götz D., Laurent P., Lebrun F., Daigne F., Bošnjak Ž. (2009). Variable polarization meashured in the prompt emission of GRB 04121 9A using IBIS on board integral. Astrophys. J., 695, L208.
https://doi.org/10.1088/0004-637X/695/2/L208
Heiles C. (2000). 9286 Stars: Anglomeration of Stellar Polarization Catalogs. Astron. J., 119(2), 923-927.
https://doi.org/10.1086/301236
Huang C., Meng B., Chang Y., Chen F., Zhang M., Han L., Xiang G., Tu B., Hong J. (2020). Geometric calibration method based on a two-dimensional turntable for a directional polarimetric camera. Appl. Opt., 59(1), 226-233.
https://doi.org/10.1364/AO.59.000226
Ivanova O. V., Dlugach J. M., Afanasiev V. L., Reshetnyk V. M., Korsun P. P. (2015). CCD polarimetry of distant comets C/2010 S1 (LINEAR) and C/2010 R1 (LINEAR) at the 6-m telescope of the SAO RAS. Planet. and Space Sci., 118, 199-210.
https://doi.org/10.1016/j.pss.2015.05.009
Ivanova O., Rosenbush V., Afanasiev V., Kiselev N. (2017). Polarimetry, photometry, and spectroscopy of comet C/2009 P1 (Garradd). Icarus, 284, 167-182.
https://doi.org/10.1016/j.icarus.2016.11.014
Ivanova O., Rosenbush V., Luk'yanyk I., Kolokolova L., Kleshchonok V., Kiselev N., Kirk Z. R. (2021). Observations of distant comet C/2011 KP36 (Spacewatch): photometry, spectroscopy, and polarimetry. Astron. and Astrophys., 651, A29.
https://doi.org/10.1051/0004-6361/202039668
Jannuzi B. T., Green R. F., French H. (1993). An optical polarization survey for BL Lacertae objects and highly polarized quasars. Astrophys. J., 404, 100-111.
https://doi.org/10.1086/172262
Kawabata K. S., Nagae O., Chiyonobu S., Tanaka H., Nakaya H., Suzuki M., Kamata Y., Miyazaki S., Hiragi K., Miyamoto H., Yamanaka M., Arai A., Yamashita T., Uemura M., Ohsugi T., Isogai M., Ishitobi Y., Sato S. (2008). Wide-field one-shot optical polarimeter: HOWPol. Proc. SPIE, 70144L.
https://doi.org/10.1117/12.788569
Kolokolova L., Kimura H., Kiselev N., Rosenbush V. (2007). Two different evolutionary types of comets proved by polarimetric and infrared properties of their dust. Astron. and Astrophys., 463(3), 1189-1196.
https://doi.org/10.1051/0004-6361:20065069
Li H.-B. (2021). Magnetic Fields in Molecular Clouds - Observation and Interpretation. Galaxies, 9(2), 41.
https://doi.org/10.3390/galaxies9020041
Lin H.-N., Li X., Chang Z. (2017). Polarization of gamma-ray burst afterglows in the synchrotron self-Compton process from a highly relativistic jet. Chinese Phys., 41(4), 045101.
https://doi.org/10.1088/1674-1137/41/4/045101
Llull P., Myhre G., Pau S. (2011). Lens array Stokes imaging polarimeter. Meas. Sci. Technol., 22, 065901.
https://doi.org/10.1088/0957-0233/22/6/065901
Magalhães A. M., Gomes A. L., de Almeida V. A., Rodrigues C. V., Pereyra A., Wisniewski J., Bjorkman K., Bjorkman J., Meade M., Babler B. L. (2008). The magnetic field structure of the Small Magellanic Cloud. Proc. IAU, 4, S256, 178-183.
https://doi.org/10.1017/S1743921308028421
Maharana S., Kypriotakis J. A., Ramaprakash A. N., Rajarshi C., Anche R. M., Shrish Shrish, Blinov D., Eriksen H. K., Ghosh T., Gjerløw E., Mandarakas N., Panopoulou G. V., Pavlidou V., Pearson T. J., Pelgrims V., Potter S. B., Readhead A. C. S., Skalidis R., Tassis K., Wehus I. K. (2021). WALOP-South: A Four Camera One Shot Imaging Polarimeter for PASIPHAE Survey. Paper I. Optical Design. J. Astron. Telesc., Instrum., and Systems, 7(1), 014004.
https://doi.org/10.1117/1.JATIS.7.1.014004
Martínez-Solaeche G., Karakci A., Delabrouille J. (2018). A 3D model of polarized dust emission in the Milky Way. Mon. Notic. Roy. Astron. Soc., 476, 1310-1330.
https://doi.org/10.1093/mnras/sty204
Martins J. V. (2018). The Hyperangular Imaging Polarimeter (HARP) and the Use of Nanosatellites for Earth Science Remote Sensing.
URL: http://www.fap.if.usp.br/~hbarbosa/uploads/Site/ JournalClub/Vanderlei_11jul2018.pdf (Last accessed: 23.02.2024).
McKee C., Ostriker E. (2007). Theory of Star Formation. Annu. Rev. Astron. and Astrophys., 45, 565-687.
https://doi.org/10.1146/annurev.astro.45.051806.110602
Milinevsky G., Oberemok Y., Syniavskyi I., Bovchaliuk A., Kolomiets I., Fesianov I., Wang Y. (2019). Calibration model of polarimeters on board the Aerosol-UA space mission. J. Quant. Spectrosc. and Radiat. Transfer., 229(5), 92-105.
https://doi.org/10.1016/j.jqsrt.2019.03.007
Minami Y. (2020). Determination of miscalibrated polarization angles from observed cosmic microwave background and foreground EB power spectra: Application to partial-sky observation. Prog. Theor. Exp. Phys., 6, 063E01.
https://doi.org/10.1093/ptep/ptaa057
Minami Y., Komatsu E. (2020). New Extraction of the Cosmic Birefringence from the Planck 2018 Polarization Data. Phys. Rev. Lett., 125, 221301.
https://doi.org/10.1103/PhysRevLett.125.221301
Minami Y., Ochi H., Ichiki K., Katayama N., Komatsu E., Matsumura T. (2019). Simultaneous determination of the cosmic birefringence and miscalibrated polarization angles from CMB experiments. Prog. Theor. Exp. Phys., 2019(8), 083E02.
https://doi.org/10.1093/ptep/ptz079
Mudge J., Virgen M., Dean P. (2009). Near-infrared simultaneous Stokes imaging polarimeter. Proc. SPIE, 7461, 74610L-1-74610L-6.
https://doi.org/10.1117/12.828437
Mu T., Bao D., Han F., Sun Y., Chen Z., Tang Q., Zhang C. (2019). Optimized design, calibration, and validation of an achromatic snapshot full-Stokes imaging polarimeter. Opt. Express, 27(16), 23009-23028.
https://doi.org/10.1364/OE.27.023009
Mu T., Zhang C., Liang R. (2015). Demonstration of a snapshot full-Stokes division-of-aperture imaging polarimeter using Wollaston prism array. J. Opt., 17(12), 125708.
https://doi.org/10.1088/2040-8978/17/12/125708
Mu T., Zhang C., Li Q., Liang R. (2015). Error analysis of single-snapshot full-Stokes division-of-aperture imaging polarimeters. Opt. Express, 23(8), 10822-10835.
https://doi.org/10.1364/OE.23.010822
Oliva E. (1997). Wedged double Wollaston, a device for single shot polarimetric measurements. Astron. and Astrophys. Suppl. Ser., 123(3), 589-592.
https://doi.org/10.1051/aas:1997175
Pedersini F., Sarti A., Tubaro S. (1999). Accurate and simple geometric calibration of multi-camera Systems. Signal Proc.,
(3), 309-334.
https://doi.org/10.1016/S0165-1684(99)00042-0
Pernechele C., Abe L., Bendjoya P., Cellino A., Massone G., Rivet J. P., Tanga P. (2012). A "single-shot" optical linear polarimeter for asteroids studies. Proc. SPIE, 8446, 84462H-1-6.
https://doi.org/10.1117/12.925933
Perreault J. D. (2013). Triple Wollaston-prism complete-Stokes imaging polarimeter. Opt. Lett., 38(19), 3874-3877.
https://doi.org/10.1364/OL.38.003874
Pezzaniti J. L., Chenault D., Roche M., Reinhardt J., Pezzaniti J. P., Schultz H. (2008). Four camera complete Stokes
imaging polarimeter. Proc. SPIE., 6972, 69720J-1b-69720J-12.
https://doi.org/10.1117/12.784797
Piran T. (1999). Gamma ray bursts and the fireball model. Phys. Rep., 314(6), 575-667. DOI: 10.1016/S0370-1573(98)00127-6.
https://doi.org/10.1016/S0370-1573(98)00127-6
Radecke H. D., Kanbach G. (1992). The Egret High Energy Gamma Ray Telescope on GRO: Instrument Description and Scientific Mission. Data Analysis in Astronomy IV. Ed. V. Di. Gesu et al., 303-310.
https://doi.org/10.1007/978-1-4615-3388-7_31
Ramaprakash A. N., Rajarshi C. V., Das H. K., Khodade P., Modi D., Panopoulou G., Maharana S., Blinov D., Angelakis E., Casadio C., Fuhrmann L., Hovatta T., Kiehlmann S., King O. G., Kylafis N., Kougentakis A., Kus A., Mahabal A., Marecki A., Myserlis I., Paterakis G., Paleologou E., Liodakis I., Papadakis I., Papamastorakis I., Pavlidou V., Pazderski E., Pearson T. J., Readhead A. C. S., Reig P., Slowikowska A., Tassis K., Zensus J. A. (2019). RoboPol: A four-channel optical
imaging polarimeter. Mon. Notic. Roy. Astron. Soc., 485, 2355-2366.
https://doi.org/10.1093/mnras/stz557
Romero G. (2005). Proc. Marcel Grossmann 10th Meeting, World Scientific Publishing (Singapore), P. 2429.
Shestopalov D. I., Golubeva L. F. (2015). Polarimetric properties of asteroids. Adv. Space Res., 56, 2254-2274.
https://doi.org/10.1016/j.asr.2015.08.013
Shibata S., Hagen N., Kawabata S., Otani Y. (2019). Compact and high-speed Stokes polarimeter using three-way polarization- preserving beam splitters. Appl. Opt., 58(21), 5644-5649.
https://doi.org/10.1364/AO.58.005644
Shrestha M., Steele I. A., Piascik A. S., Jermak H., Smith R. J., Copperwheat C. M. (2020). Characterization of a dualbeam, dual-camera optical imaging polarimeter. Mon. Notic. Roy. Astron. Soc., 494, 4676-4686.
https://doi.org/10.1093/mnras/staa1049
Shu F., Adams F., Lizano S. (1987). Star Formation in Molecular Clouds: Observation and Theory. Annu. Rev. Astron. and Astrophys., 25, 23-81.
https://doi.org/10.1146/annurev.aa.25.090187.000323
Sillanpää A., Takalo L. O., Nilsson K., Kikuchi S. (1993). Photopolarimetry of BL Lac. Astrophys. Space Sci., 206, 55-70.
https://doi.org/10.1007/BF00658383
Sinyavskiĭ I. I., Ivanov Yu. S., Vid'machenko A. P. (2013). Concept of the construction of the optical setup of a panoramic Stokes polarimeter for small telescopes. J. Opt. Technol., 80(9), 545-548.
https://doi.org/10.1364/JOT.80.000545
Steele I. A., Mundell C. G., Smith R. J., Kobayashi S., Guidorzi C. (2009). Ten percent polarized optical emission from GRB-090102. Nature, 462, 767-769.
https://doi.org/10.1038/nature08590
Svalheim T. L., Andersen K. J., Aurlien R., Banerji R., Bersanelli M., Bertocco S., Brilenkov M., Carbone M., Colombo L. P. L., Eriksen H. K., Foss M. K., Franceschet C., Fuskeland U., Galeotta S., Galloway M., Gerakakis S., Gjerløw E., Hensley B., Herman D., Iacobellis M., Ieronymaki M., Ihle H. T., Jewell J. B., Karakci A., Keihänen E., Keskitalo R., Maggio G., Maino D., Maris M., Paradiso S., Partridge B., Reinecke M., Suur-Uski A.-S., Tavagnacco D., Thommesen H., Watts D. J., Wehus I. K., Zacchei A. (2023). Beyond Planck. XIV. Polarized foreground emission between 30 and 70 GHz. Astron. and Astrophys., 675, A14.
https://doi.org/10.1051/0004-6361/202243160
Syniavskyi I., Ivanov Yu. S. (2014). Four-channel imaging Stokes polarimeter for small telescopes. Contrib. Astron. Observ. Skalnate Pleso, 43, 253-255.
Syniavskyi I. I., Ivanov Yu. S., Sosonkin M. G., Milinevsky G. P., Koshman G. (2018). Multispectral imager-polarimeter of the "AEROSOL-UA" space project. Space Sci. and Technol., 24(3), 23-32.
https://doi.org/10.15407/knit2018.03.023
Syniavskyi I., Oberemok Ye., Danylevsky V., Bovchaliuk A., Fesianov I., Milinevsky G., Savenkov S., Yukhymchuk Yu., Sosonkin M., Ivanov Yu. (2021). Aerosol-UA satellite mission for the polarimetric study of aerosols in the atmosphere. J. Quant. Spectrosc. and Radiat. Transfer., 267, 107601.
https://doi.org/10.1016/j.jqsrt.2021.107601
Tedesco E. F. (1994). Asteroid albedos and diameters. Asteroids, comets, meteors 1993: Proc. 160th Int. Astron. Union (Belgirate, Italy, June 14-18, 1993). Eds A. Milani, M. Di Martino, and A. Cellino. Int. Astron. Union. Symp., No. 160, 55-74.
https://doi.org/10.1017/S0074180900046453
Toth L. V., Doi Y., Zahorecz S., Pinter S., Racz I. I., Bagoly Z., Balazs L.G., Horvath I., Kiss C., Kovács T., Onishi T. (2019). Galactic foreground of gamma-ray bursts from AKARI Far-Infrared Surveyor. Publ. Astron. Soc. Jap., 71(1), 10 (1-20).
https://doi.org/10.1093/pasj/psy123
Tyo J., S., Goldstein D., L., Chenault D. B., Shaw J. A. (2006). Review of passive imaging polarimetry for remote sensing applications. Appl. Opt., 45(22), 5453-5469.
https://doi.org/10.1364/AO.45.005453
Zhang H. (2019). Blazar optical polarimetry: Current progress in observations and theories. Galaxies, 7(4), 85.
https://doi.org/10.3390/galaxies7040085
Zhang Z. (2020). А flexible new technique for camera calibration. IEEE Transactions on Pattern Analysis and Machine Intelligence, 22, 1330-1334.
https://doi.org/10.1109/34.888718
Zhu S., Jin S., Shu Y., Liu Z., Hong J. (2023) Polarization calibration method for simultaneous imaging polarization camera. Proc. SPIE., 125570D.