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Detection of the Temporal Variation of the Sun's Cosmic Ray Shadow with the IceCube Detector

We report on the observation of a deficit in the cosmic ray flux from the directions of the Moon and Sun with five years of data taken by the IceCube Neutrino Observatory. Between 2010 May and 2011 May the IceCube detector operated with 79 strings deployed in the glacial ice at the South Pole, and w...

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Published in:The Astrophysical journal 2019-02, Vol.872 (2), p.133
Main Authors: Ahlers, M., Ansseau, I., Anton, G., Bai, X., Bay, R., Berley, D., Bernardini, E., Bohm, C., Böser, S., Bradascio, F., Bron, S., Brostean-Kaiser, J., Busse, R. S., Carver, T., Chen, C., Cowen, D. F., Dave, P., Day, M., De Clercq, C., De Ridder, S., de With, M., Dujmovic, H., Evenson, P. A., Fahey, S., Fazely, A. R., Felde, J., Gallagher, J., Gerhardt, L., Ghorbani, K., Glauch, T., Grant, D., Haack, C., Hoffmann, R., Hoinka, T., Hokanson-Fasig, B., Hoshina, K., Hünnefeld, M., Jones, B. J. P., Kalaczynski, P., Karg, T., Katz, U., Kauer, M., Kheirandish, A., Kiryluk, J., Köpke, L., Krückl, G., Labare, M., Lünemann, J., Madsen, J., Mancina, S., Maruyama, R., Mase, K., Maunu, R., Medici, M., Meures, T., Miarecki, S., Micallef, J., Moore, R. W., Obertacke Pollmann, A., O'Sullivan, E., Pandya, H., Peiffer, P., Pieloth, D., Pinat, E., Price, P. B., Raab, C., Rameez, M., Relethford, B., Renzi, G., Resconi, E., Rongen, M., Rott, C., Ruhe, T., Satalecka, K., Schaufel, M., Seckel, D., Seunarine, S., Soedingrekso, J., Spiczak, G. M., Stasik, A., Steuer, A., Stezelberger, T., Stuttard, T., Ter-Antonyan, S., Terliuk, A., Tönnis, C., Tosi, D., Tung, C. F., Turley, C. F., Ty, B., van Eijndhoven, N., Watson, T. B., Weiss, M. J., Whitehorn, N., Wiebusch, C. H., Woolsey, E., Woschnagg, K., Wrede, G., Xu, Y., Yuan, T.
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cited_by cdi_FETCH-LOGICAL-c481t-5c0e433f4620d7c138b7ba3c4e73365dd361c9658f6aa9cf3fa3d837ce1bacda3
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container_title The Astrophysical journal
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creator Ahlers, M.
Ansseau, I.
Anton, G.
Bai, X.
Bay, R.
Berley, D.
Bernardini, E.
Bohm, C.
Böser, S.
Bradascio, F.
Bron, S.
Brostean-Kaiser, J.
Busse, R. S.
Carver, T.
Chen, C.
Cowen, D. F.
Dave, P.
Day, M.
De Clercq, C.
De Ridder, S.
de With, M.
Dujmovic, H.
Evenson, P. A.
Fahey, S.
Fazely, A. R.
Felde, J.
Gallagher, J.
Gerhardt, L.
Ghorbani, K.
Glauch, T.
Grant, D.
Haack, C.
Hoffmann, R.
Hoinka, T.
Hokanson-Fasig, B.
Hoshina, K.
Hünnefeld, M.
Jones, B. J. P.
Kalaczynski, P.
Karg, T.
Katz, U.
Kauer, M.
Kheirandish, A.
Kiryluk, J.
Köpke, L.
Krückl, G.
Labare, M.
Lünemann, J.
Madsen, J.
Mancina, S.
Maruyama, R.
Mase, K.
Maunu, R.
Medici, M.
Meures, T.
Miarecki, S.
Micallef, J.
Moore, R. W.
Obertacke Pollmann, A.
O'Sullivan, E.
Pandya, H.
Peiffer, P.
Pieloth, D.
Pinat, E.
Price, P. B.
Raab, C.
Rameez, M.
Relethford, B.
Renzi, G.
Resconi, E.
Rongen, M.
Rott, C.
Ruhe, T.
Satalecka, K.
Schaufel, M.
Seckel, D.
Seunarine, S.
Soedingrekso, J.
Spiczak, G. M.
Stasik, A.
Steuer, A.
Stezelberger, T.
Stuttard, T.
Ter-Antonyan, S.
Terliuk, A.
Tönnis, C.
Tosi, D.
Tung, C. F.
Turley, C. F.
Ty, B.
van Eijndhoven, N.
Watson, T. B.
Weiss, M. J.
Whitehorn, N.
Wiebusch, C. H.
Woolsey, E.
Woschnagg, K.
Wrede, G.
Xu, Y.
Yuan, T.
description We report on the observation of a deficit in the cosmic ray flux from the directions of the Moon and Sun with five years of data taken by the IceCube Neutrino Observatory. Between 2010 May and 2011 May the IceCube detector operated with 79 strings deployed in the glacial ice at the South Pole, and with 86 strings between 2011 May and 2015 May. A binned analysis is used to measure the relative deficit and significance of the cosmic ray shadows. Both the cosmic ray Moon and Sun shadows are detected with high statistical significance (>10 ) for each year. The results for the Moon shadow are consistent with previous analyses and verify the stability of the IceCube detector over time. This work represents the first observation of the Sun shadow with the IceCube detector. We show that the cosmic ray shadow of the Sun varies with time. These results make it possible to study cosmic ray transport near the Sun with future data from IceCube.
doi_str_mv 10.3847/1538-4357/aaffd1
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P. ; Kalaczynski, P. ; Karg, T. ; Katz, U. ; Kauer, M. ; Kheirandish, A. ; Kiryluk, J. ; Köpke, L. ; Krückl, G. ; Labare, M. ; Lünemann, J. ; Madsen, J. ; Mancina, S. ; Maruyama, R. ; Mase, K. ; Maunu, R. ; Medici, M. ; Meures, T. ; Miarecki, S. ; Micallef, J. ; Moore, R. W. ; Obertacke Pollmann, A. ; O'Sullivan, E. ; Pandya, H. ; Peiffer, P. ; Pieloth, D. ; Pinat, E. ; Price, P. B. ; Raab, C. ; Rameez, M. ; Relethford, B. ; Renzi, G. ; Resconi, E. ; Rongen, M. ; Rott, C. ; Ruhe, T. ; Satalecka, K. ; Schaufel, M. ; Seckel, D. ; Seunarine, S. ; Soedingrekso, J. ; Spiczak, G. M. ; Stasik, A. ; Steuer, A. ; Stezelberger, T. ; Stuttard, T. ; Ter-Antonyan, S. ; Terliuk, A. ; Tönnis, C. ; Tosi, D. ; Tung, C. F. ; Turley, C. F. ; Ty, B. ; van Eijndhoven, N. ; Watson, T. B. ; Weiss, M. J. ; Whitehorn, N. ; Wiebusch, C. H. ; Woolsey, E. ; Woschnagg, K. ; Wrede, G. ; Xu, Y. ; Yuan, T. ; IceCube Collaboration ; Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States)</creatorcontrib><description>We report on the observation of a deficit in the cosmic ray flux from the directions of the Moon and Sun with five years of data taken by the IceCube Neutrino Observatory. Between 2010 May and 2011 May the IceCube detector operated with 79 strings deployed in the glacial ice at the South Pole, and with 86 strings between 2011 May and 2015 May. A binned analysis is used to measure the relative deficit and significance of the cosmic ray shadows. Both the cosmic ray Moon and Sun shadows are detected with high statistical significance (&gt;10 ) for each year. The results for the Moon shadow are consistent with previous analyses and verify the stability of the IceCube detector over time. This work represents the first observation of the Sun shadow with the IceCube detector. We show that the cosmic ray shadow of the Sun varies with time. These results make it possible to study cosmic ray transport near the Sun with future data from IceCube.</description><identifier>ISSN: 0004-637X</identifier><identifier>ISSN: 1538-4357</identifier><identifier>EISSN: 1538-4357</identifier><identifier>DOI: 10.3847/1538-4357/aaffd1</identifier><language>eng</language><publisher>Philadelphia: The American Astronomical Society</publisher><subject>ASTRONOMY AND ASTROPHYSICS ; Astrophysics ; Cosmic rays ; Glacier ice ; ISM: magnetic fields ; Moon ; Neutrinos ; Sensors ; Shadows ; South Pole ; Stability analysis ; Strings ; Sun: activity ; sunspot ; sunspots</subject><ispartof>The Astrophysical journal, 2019-02, Vol.872 (2), p.133</ispartof><rights>2019. The American Astronomical Society. 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A binned analysis is used to measure the relative deficit and significance of the cosmic ray shadows. Both the cosmic ray Moon and Sun shadows are detected with high statistical significance (&gt;10 ) for each year. The results for the Moon shadow are consistent with previous analyses and verify the stability of the IceCube detector over time. This work represents the first observation of the Sun shadow with the IceCube detector. We show that the cosmic ray shadow of the Sun varies with time. These results make it possible to study cosmic ray transport near the Sun with future data from IceCube.</description><subject>ASTRONOMY AND ASTROPHYSICS</subject><subject>Astrophysics</subject><subject>Cosmic rays</subject><subject>Glacier ice</subject><subject>ISM: magnetic fields</subject><subject>Moon</subject><subject>Neutrinos</subject><subject>Sensors</subject><subject>Shadows</subject><subject>South Pole</subject><subject>Stability analysis</subject><subject>Strings</subject><subject>Sun: activity</subject><subject>sunspot</subject><subject>sunspots</subject><issn>0004-637X</issn><issn>1538-4357</issn><issn>1538-4357</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2019</creationdate><recordtype>article</recordtype><recordid>eNqNkUFr3DAQhUVIIJuk9x5FSuklTiSPbMnHsNu0gUChSUMPhUGWpayWrOVKNkv-fe26JDmU0tMwMx9v5vEIecvZOSghL3gBKhNQyAutnWv4Hlk8j_bJgjEmshLk90NylNJmavOqWpAfK9tb0_vQ0uBov7b0zm67EPUjvdfR69eb26H9kOgypK039Kt-ordr3YQd3fl-_Ru4NnY51JbOmiGekAOnH5N986cek29XH--Wn7ObL5-ul5c3mRGK91lhmBUATpQ5a6ThoGpZazDCSoCyaBoouanKQrlS68o4cBoaBdJYXmvTaDgmZ7Nu2tluqLGLfqvjEwbtceXvLzHEBxwGBKkqlf8fngbkpSx4NeKnMx5S7zEZP5pbm9C2o0fkRSkYhxF6N0NdDD8Hm3rchCG2o2vMRw-qEhWfLrOZMjGkFK17vs0ZTjHilBlOmeEc48uzPnQvmv_A3_8F190Glcwxx_FV7BoHvwAMS6uD</recordid><startdate>20190220</startdate><enddate>20190220</enddate><creator>Ahlers, M.</creator><creator>Ansseau, I.</creator><creator>Anton, G.</creator><creator>Bai, X.</creator><creator>Bay, R.</creator><creator>Berley, D.</creator><creator>Bernardini, E.</creator><creator>Bohm, C.</creator><creator>Böser, S.</creator><creator>Bradascio, F.</creator><creator>Bron, S.</creator><creator>Brostean-Kaiser, J.</creator><creator>Busse, R. 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H.</creator><creator>Woolsey, E.</creator><creator>Woschnagg, K.</creator><creator>Wrede, G.</creator><creator>Xu, Y.</creator><creator>Yuan, T.</creator><general>The American Astronomical Society</general><general>IOP Publishing</general><general>Institute of Physics (IOP)</general><scope>AAYXX</scope><scope>CITATION</scope><scope>7TG</scope><scope>8FD</scope><scope>H8D</scope><scope>KL.</scope><scope>L7M</scope><scope>OIOZB</scope><scope>OTOTI</scope><scope>ADTPV</scope><scope>AOWAS</scope><scope>DG7</scope><scope>DF2</scope><orcidid>https://orcid.org/0000-0003-3108-1141</orcidid><orcidid>https://orcid.org/0000-0002-7063-4418</orcidid><orcidid>https://orcid.org/0000-0001-7074-0539</orcidid><orcidid>https://orcid.org/0000-0003-1059-9603</orcidid><orcidid>https://orcid.org/0000-0001-7297-8217</orcidid><orcidid>https://orcid.org/0000000331081141</orcidid><orcidid>https://orcid.org/0000000170740539</orcidid><orcidid>https://orcid.org/0000000310599603</orcidid><orcidid>https://orcid.org/0000000172978217</orcidid><orcidid>https://orcid.org/0000000270634418</orcidid></search><sort><creationdate>20190220</creationdate><title>Detection of the Temporal Variation of the Sun's Cosmic Ray Shadow with the IceCube Detector</title><author>Ahlers, M. ; Ansseau, I. ; Anton, G. ; Bai, X. ; Bay, R. ; Berley, D. ; Bernardini, E. ; Bohm, C. ; Böser, S. ; Bradascio, F. ; Bron, S. ; Brostean-Kaiser, J. ; Busse, R. S. ; Carver, T. ; Chen, C. ; Cowen, D. F. ; Dave, P. ; Day, M. ; De Clercq, C. ; De Ridder, S. ; de With, M. ; Dujmovic, H. ; Evenson, P. A. ; Fahey, S. ; Fazely, A. R. ; Felde, J. ; Gallagher, J. ; Gerhardt, L. ; Ghorbani, K. ; Glauch, T. ; Grant, D. ; Haack, C. ; Hoffmann, R. ; Hoinka, T. ; Hokanson-Fasig, B. ; Hoshina, K. ; Hünnefeld, M. ; Jones, B. J. P. ; Kalaczynski, P. ; Karg, T. ; Katz, U. ; Kauer, M. ; Kheirandish, A. ; Kiryluk, J. ; Köpke, L. ; Krückl, G. ; Labare, M. ; Lünemann, J. ; Madsen, J. ; Mancina, S. ; Maruyama, R. ; Mase, K. ; Maunu, R. ; Medici, M. ; Meures, T. ; Miarecki, S. ; Micallef, J. ; Moore, R. W. ; Obertacke Pollmann, A. ; O'Sullivan, E. ; Pandya, H. ; Peiffer, P. ; Pieloth, D. ; Pinat, E. ; Price, P. B. ; Raab, C. ; Rameez, M. ; Relethford, B. ; Renzi, G. ; Resconi, E. ; Rongen, M. ; Rott, C. ; Ruhe, T. ; Satalecka, K. ; Schaufel, M. ; Seckel, D. ; Seunarine, S. ; Soedingrekso, J. ; Spiczak, G. M. ; Stasik, A. ; Steuer, A. ; Stezelberger, T. ; Stuttard, T. ; Ter-Antonyan, S. ; Terliuk, A. ; Tönnis, C. ; Tosi, D. ; Tung, C. F. ; Turley, C. F. ; Ty, B. ; van Eijndhoven, N. ; Watson, T. B. ; Weiss, M. J. ; Whitehorn, N. ; Wiebusch, C. 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(LBNL), Berkeley, CA (United States)</creatorcontrib><collection>CrossRef</collection><collection>Meteorological &amp; Geoastrophysical Abstracts</collection><collection>Technology Research Database</collection><collection>Aerospace Database</collection><collection>Meteorological &amp; Geoastrophysical Abstracts - Academic</collection><collection>Advanced Technologies Database with Aerospace</collection><collection>OSTI.GOV - Hybrid</collection><collection>OSTI.GOV</collection><collection>SwePub</collection><collection>SwePub Articles</collection><collection>SWEPUB Stockholms universitet</collection><collection>SWEPUB Uppsala universitet</collection><jtitle>The Astrophysical journal</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Ahlers, M.</au><au>Ansseau, I.</au><au>Anton, G.</au><au>Bai, X.</au><au>Bay, R.</au><au>Berley, D.</au><au>Bernardini, E.</au><au>Bohm, C.</au><au>Böser, S.</au><au>Bradascio, F.</au><au>Bron, S.</au><au>Brostean-Kaiser, J.</au><au>Busse, R. S.</au><au>Carver, T.</au><au>Chen, C.</au><au>Cowen, D. F.</au><au>Dave, P.</au><au>Day, M.</au><au>De Clercq, C.</au><au>De Ridder, S.</au><au>de With, M.</au><au>Dujmovic, H.</au><au>Evenson, P. A.</au><au>Fahey, S.</au><au>Fazely, A. R.</au><au>Felde, J.</au><au>Gallagher, J.</au><au>Gerhardt, L.</au><au>Ghorbani, K.</au><au>Glauch, T.</au><au>Grant, D.</au><au>Haack, C.</au><au>Hoffmann, R.</au><au>Hoinka, T.</au><au>Hokanson-Fasig, B.</au><au>Hoshina, K.</au><au>Hünnefeld, M.</au><au>Jones, B. J. P.</au><au>Kalaczynski, P.</au><au>Karg, T.</au><au>Katz, U.</au><au>Kauer, M.</au><au>Kheirandish, A.</au><au>Kiryluk, J.</au><au>Köpke, L.</au><au>Krückl, G.</au><au>Labare, M.</au><au>Lünemann, J.</au><au>Madsen, J.</au><au>Mancina, S.</au><au>Maruyama, R.</au><au>Mase, K.</au><au>Maunu, R.</au><au>Medici, M.</au><au>Meures, T.</au><au>Miarecki, S.</au><au>Micallef, J.</au><au>Moore, R. W.</au><au>Obertacke Pollmann, A.</au><au>O'Sullivan, E.</au><au>Pandya, H.</au><au>Peiffer, P.</au><au>Pieloth, D.</au><au>Pinat, E.</au><au>Price, P. B.</au><au>Raab, C.</au><au>Rameez, M.</au><au>Relethford, B.</au><au>Renzi, G.</au><au>Resconi, E.</au><au>Rongen, M.</au><au>Rott, C.</au><au>Ruhe, T.</au><au>Satalecka, K.</au><au>Schaufel, M.</au><au>Seckel, D.</au><au>Seunarine, S.</au><au>Soedingrekso, J.</au><au>Spiczak, G. M.</au><au>Stasik, A.</au><au>Steuer, A.</au><au>Stezelberger, T.</au><au>Stuttard, T.</au><au>Ter-Antonyan, S.</au><au>Terliuk, A.</au><au>Tönnis, C.</au><au>Tosi, D.</au><au>Tung, C. F.</au><au>Turley, C. F.</au><au>Ty, B.</au><au>van Eijndhoven, N.</au><au>Watson, T. B.</au><au>Weiss, M. J.</au><au>Whitehorn, N.</au><au>Wiebusch, C. H.</au><au>Woolsey, E.</au><au>Woschnagg, K.</au><au>Wrede, G.</au><au>Xu, Y.</au><au>Yuan, T.</au><aucorp>IceCube Collaboration</aucorp><aucorp>Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States)</aucorp><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Detection of the Temporal Variation of the Sun's Cosmic Ray Shadow with the IceCube Detector</atitle><jtitle>The Astrophysical journal</jtitle><stitle>APJ</stitle><addtitle>Astrophys. J</addtitle><date>2019-02-20</date><risdate>2019</risdate><volume>872</volume><issue>2</issue><spage>133</spage><pages>133-</pages><issn>0004-637X</issn><issn>1538-4357</issn><eissn>1538-4357</eissn><abstract>We report on the observation of a deficit in the cosmic ray flux from the directions of the Moon and Sun with five years of data taken by the IceCube Neutrino Observatory. Between 2010 May and 2011 May the IceCube detector operated with 79 strings deployed in the glacial ice at the South Pole, and with 86 strings between 2011 May and 2015 May. A binned analysis is used to measure the relative deficit and significance of the cosmic ray shadows. Both the cosmic ray Moon and Sun shadows are detected with high statistical significance (&gt;10 ) for each year. The results for the Moon shadow are consistent with previous analyses and verify the stability of the IceCube detector over time. This work represents the first observation of the Sun shadow with the IceCube detector. We show that the cosmic ray shadow of the Sun varies with time. These results make it possible to study cosmic ray transport near the Sun with future data from IceCube.</abstract><cop>Philadelphia</cop><pub>The American Astronomical Society</pub><doi>10.3847/1538-4357/aaffd1</doi><tpages>12</tpages><orcidid>https://orcid.org/0000-0003-3108-1141</orcidid><orcidid>https://orcid.org/0000-0002-7063-4418</orcidid><orcidid>https://orcid.org/0000-0001-7074-0539</orcidid><orcidid>https://orcid.org/0000-0003-1059-9603</orcidid><orcidid>https://orcid.org/0000-0001-7297-8217</orcidid><orcidid>https://orcid.org/0000000331081141</orcidid><orcidid>https://orcid.org/0000000170740539</orcidid><orcidid>https://orcid.org/0000000310599603</orcidid><orcidid>https://orcid.org/0000000172978217</orcidid><orcidid>https://orcid.org/0000000270634418</orcidid><oa>free_for_read</oa></addata></record>
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identifier ISSN: 0004-637X
ispartof The Astrophysical journal, 2019-02, Vol.872 (2), p.133
issn 0004-637X
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1538-4357
language eng
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source EZB Electronic Journals Library
subjects ASTRONOMY AND ASTROPHYSICS
Astrophysics
Cosmic rays
Glacier ice
ISM: magnetic fields
Moon
Neutrinos
Sensors
Shadows
South Pole
Stability analysis
Strings
Sun: activity
sunspot
sunspots
title Detection of the Temporal Variation of the Sun's Cosmic Ray Shadow with the IceCube Detector
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