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An induced annual modulation signature in COSINE-100 data by DAMA/LIBRA’s analysis method

The DAMA/LIBRA collaboration has reported the observation of an annual modulation in the event rate that has been attributed to dark matter interactions over the last two decades. However, even though tremendous efforts to detect similar dark matter interactions were pursued, no definitive evidence...

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Autores principales: Adhikari, Govinda, Carlin, Nelson, Choi, JaeJin, Choi, Seonho, Ezeribe, Anthony, França, Luis Eduardo, Ha, Chang Hyon, Hahn, In Sik, Hollick, Sophia J., Jeon, Eunju, Jo, Jay Hyun, Joo, Han Wool, Kang, Woon Gu, Kauer, Matthew, Kim, Bongho, Kim, Hongjoo, Kim, Jinyoung, Kim, Kyungwon, Kim, SungHyun, Kim, Sun Kee, Kim, Won Kyung, Kim, Yeongduk, Kim, Yong-Hamb, Ko, Young Ju, Lee, Doo Hyok, Lee, Eun Kyung, Lee, Hyunseok, Lee, Hyun Su, Lee, Hye Young, Lee, In Soo, Lee, Jaison, Lee, Jooyoung, Lee, Moo Hyun, Lee, Seo Hyun, Lee, Seung Mok, Lee, Yu Jin, Leonard, Douglas, Manzato, Bruno B., Maruyama, Reina H., Neal, Robert J., Nikkel, James A., Olsen, Stephen L., Park, Byung Ju, Park, Hyang Kyu, Park, Hyeonseo, Park, Kangsoon, Park, Se Dong, Pitta, Ricardo L. C., Prihtiadi, Hafizh, Ra, Sejin, Rott, Carsten, Shin, Keon Ah, Scarff, Andrew, Spooner, Neil J. C., Thompson, William G., Yang, Liang, Yu, Gyun Ho
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10033922/
https://www.ncbi.nlm.nih.gov/pubmed/36949218
http://dx.doi.org/10.1038/s41598-023-31688-4
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author Adhikari, Govinda
Carlin, Nelson
Choi, JaeJin
Choi, Seonho
Ezeribe, Anthony
França, Luis Eduardo
Ha, Chang Hyon
Hahn, In Sik
Hollick, Sophia J.
Jeon, Eunju
Jo, Jay Hyun
Joo, Han Wool
Kang, Woon Gu
Kauer, Matthew
Kim, Bongho
Kim, Hongjoo
Kim, Jinyoung
Kim, Kyungwon
Kim, SungHyun
Kim, Sun Kee
Kim, Won Kyung
Kim, Yeongduk
Kim, Yong-Hamb
Ko, Young Ju
Lee, Doo Hyok
Lee, Eun Kyung
Lee, Hyunseok
Lee, Hyun Su
Lee, Hye Young
Lee, In Soo
Lee, Jaison
Lee, Jooyoung
Lee, Moo Hyun
Lee, Seo Hyun
Lee, Seung Mok
Lee, Yu Jin
Leonard, Douglas
Manzato, Bruno B.
Maruyama, Reina H.
Neal, Robert J.
Nikkel, James A.
Olsen, Stephen L.
Park, Byung Ju
Park, Hyang Kyu
Park, Hyeonseo
Park, Kangsoon
Park, Se Dong
Pitta, Ricardo L. C.
Prihtiadi, Hafizh
Ra, Sejin
Rott, Carsten
Shin, Keon Ah
Scarff, Andrew
Spooner, Neil J. C.
Thompson, William G.
Yang, Liang
Yu, Gyun Ho
author_facet Adhikari, Govinda
Carlin, Nelson
Choi, JaeJin
Choi, Seonho
Ezeribe, Anthony
França, Luis Eduardo
Ha, Chang Hyon
Hahn, In Sik
Hollick, Sophia J.
Jeon, Eunju
Jo, Jay Hyun
Joo, Han Wool
Kang, Woon Gu
Kauer, Matthew
Kim, Bongho
Kim, Hongjoo
Kim, Jinyoung
Kim, Kyungwon
Kim, SungHyun
Kim, Sun Kee
Kim, Won Kyung
Kim, Yeongduk
Kim, Yong-Hamb
Ko, Young Ju
Lee, Doo Hyok
Lee, Eun Kyung
Lee, Hyunseok
Lee, Hyun Su
Lee, Hye Young
Lee, In Soo
Lee, Jaison
Lee, Jooyoung
Lee, Moo Hyun
Lee, Seo Hyun
Lee, Seung Mok
Lee, Yu Jin
Leonard, Douglas
Manzato, Bruno B.
Maruyama, Reina H.
Neal, Robert J.
Nikkel, James A.
Olsen, Stephen L.
Park, Byung Ju
Park, Hyang Kyu
Park, Hyeonseo
Park, Kangsoon
Park, Se Dong
Pitta, Ricardo L. C.
Prihtiadi, Hafizh
Ra, Sejin
Rott, Carsten
Shin, Keon Ah
Scarff, Andrew
Spooner, Neil J. C.
Thompson, William G.
Yang, Liang
Yu, Gyun Ho
author_sort Adhikari, Govinda
collection PubMed
description The DAMA/LIBRA collaboration has reported the observation of an annual modulation in the event rate that has been attributed to dark matter interactions over the last two decades. However, even though tremendous efforts to detect similar dark matter interactions were pursued, no definitive evidence has been observed to corroborate the DAMA/LIBRA signal. Many studies assuming various dark matter models have attempted to reconcile DAMA/LIBRA’s modulation signals and null results from other experiments, however no clear conclusion can be drawn. Apart from the dark matter hypothesis, several studies have examined the possibility that the modulation is induced by variations in detector’s environment or their specific analysis methods. In particular, a recent study presents a possible cause of the annual modulation from an analysis method adopted by the DAMA/LIBRA experiment in which the observed annual modulation could be reproduced by a slowly varying time-dependent background. Here, we study the COSINE-100 data using an analysis method similar to the one adopted by the DAMA/LIBRA experiment and observe a significant annual modulation, however the modulation phase is almost opposite to that of the DAMA/LIBRA data. Assuming the same background composition for COSINE-100 and DAMA/LIBRA, simulated experiments for the DAMA/LIBRA without dark matter signals also provide significant annual modulation with an amplitude similar to DAMA/LIBRA with opposite phase. Even though this observation does not directly explain the DAMA/LIBRA results directly, this interesting phenomenon motivates more profound studies of the time-dependent DAMA/LIBRA background data.
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spelling pubmed-100339222023-03-24 An induced annual modulation signature in COSINE-100 data by DAMA/LIBRA’s analysis method Adhikari, Govinda Carlin, Nelson Choi, JaeJin Choi, Seonho Ezeribe, Anthony França, Luis Eduardo Ha, Chang Hyon Hahn, In Sik Hollick, Sophia J. Jeon, Eunju Jo, Jay Hyun Joo, Han Wool Kang, Woon Gu Kauer, Matthew Kim, Bongho Kim, Hongjoo Kim, Jinyoung Kim, Kyungwon Kim, SungHyun Kim, Sun Kee Kim, Won Kyung Kim, Yeongduk Kim, Yong-Hamb Ko, Young Ju Lee, Doo Hyok Lee, Eun Kyung Lee, Hyunseok Lee, Hyun Su Lee, Hye Young Lee, In Soo Lee, Jaison Lee, Jooyoung Lee, Moo Hyun Lee, Seo Hyun Lee, Seung Mok Lee, Yu Jin Leonard, Douglas Manzato, Bruno B. Maruyama, Reina H. Neal, Robert J. Nikkel, James A. Olsen, Stephen L. Park, Byung Ju Park, Hyang Kyu Park, Hyeonseo Park, Kangsoon Park, Se Dong Pitta, Ricardo L. C. Prihtiadi, Hafizh Ra, Sejin Rott, Carsten Shin, Keon Ah Scarff, Andrew Spooner, Neil J. C. Thompson, William G. Yang, Liang Yu, Gyun Ho Sci Rep Article The DAMA/LIBRA collaboration has reported the observation of an annual modulation in the event rate that has been attributed to dark matter interactions over the last two decades. However, even though tremendous efforts to detect similar dark matter interactions were pursued, no definitive evidence has been observed to corroborate the DAMA/LIBRA signal. Many studies assuming various dark matter models have attempted to reconcile DAMA/LIBRA’s modulation signals and null results from other experiments, however no clear conclusion can be drawn. Apart from the dark matter hypothesis, several studies have examined the possibility that the modulation is induced by variations in detector’s environment or their specific analysis methods. In particular, a recent study presents a possible cause of the annual modulation from an analysis method adopted by the DAMA/LIBRA experiment in which the observed annual modulation could be reproduced by a slowly varying time-dependent background. Here, we study the COSINE-100 data using an analysis method similar to the one adopted by the DAMA/LIBRA experiment and observe a significant annual modulation, however the modulation phase is almost opposite to that of the DAMA/LIBRA data. Assuming the same background composition for COSINE-100 and DAMA/LIBRA, simulated experiments for the DAMA/LIBRA without dark matter signals also provide significant annual modulation with an amplitude similar to DAMA/LIBRA with opposite phase. Even though this observation does not directly explain the DAMA/LIBRA results directly, this interesting phenomenon motivates more profound studies of the time-dependent DAMA/LIBRA background data. Nature Publishing Group UK 2023-03-22 /pmc/articles/PMC10033922/ /pubmed/36949218 http://dx.doi.org/10.1038/s41598-023-31688-4 Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open AccessThis article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Adhikari, Govinda
Carlin, Nelson
Choi, JaeJin
Choi, Seonho
Ezeribe, Anthony
França, Luis Eduardo
Ha, Chang Hyon
Hahn, In Sik
Hollick, Sophia J.
Jeon, Eunju
Jo, Jay Hyun
Joo, Han Wool
Kang, Woon Gu
Kauer, Matthew
Kim, Bongho
Kim, Hongjoo
Kim, Jinyoung
Kim, Kyungwon
Kim, SungHyun
Kim, Sun Kee
Kim, Won Kyung
Kim, Yeongduk
Kim, Yong-Hamb
Ko, Young Ju
Lee, Doo Hyok
Lee, Eun Kyung
Lee, Hyunseok
Lee, Hyun Su
Lee, Hye Young
Lee, In Soo
Lee, Jaison
Lee, Jooyoung
Lee, Moo Hyun
Lee, Seo Hyun
Lee, Seung Mok
Lee, Yu Jin
Leonard, Douglas
Manzato, Bruno B.
Maruyama, Reina H.
Neal, Robert J.
Nikkel, James A.
Olsen, Stephen L.
Park, Byung Ju
Park, Hyang Kyu
Park, Hyeonseo
Park, Kangsoon
Park, Se Dong
Pitta, Ricardo L. C.
Prihtiadi, Hafizh
Ra, Sejin
Rott, Carsten
Shin, Keon Ah
Scarff, Andrew
Spooner, Neil J. C.
Thompson, William G.
Yang, Liang
Yu, Gyun Ho
An induced annual modulation signature in COSINE-100 data by DAMA/LIBRA’s analysis method
title An induced annual modulation signature in COSINE-100 data by DAMA/LIBRA’s analysis method
title_full An induced annual modulation signature in COSINE-100 data by DAMA/LIBRA’s analysis method
title_fullStr An induced annual modulation signature in COSINE-100 data by DAMA/LIBRA’s analysis method
title_full_unstemmed An induced annual modulation signature in COSINE-100 data by DAMA/LIBRA’s analysis method
title_short An induced annual modulation signature in COSINE-100 data by DAMA/LIBRA’s analysis method
title_sort induced annual modulation signature in cosine-100 data by dama/libra’s analysis method
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10033922/
https://www.ncbi.nlm.nih.gov/pubmed/36949218
http://dx.doi.org/10.1038/s41598-023-31688-4
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