Search for Lorentz-invariance violation with the first KATRIN data

Some extensions of the Standard Model of Particle Physics allow for Lorentz invariance and Charge-Parity-Time (CPT)-invariance violations. In the neutrino sector strong constraints have been set by neutrino-oscillation and time-of-flight experiments. However, some Lorentz-invariance-violating parame...

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Veröffentlicht in:Phys.Rev.D 2023-04, Vol.107 (8), Article 082005
Hauptverfasser: Aker, M., Batzler, D., Beglarian, A., Behrens, J., Berlev, A., Besserer, U., Bieringer, B., Block, F., Bobien, S., Bornschein, B., Bornschein, L., Böttcher, M., Brunst, T., Caldwell, T. S., Carney, R. M. D., Chilingaryan, S., Choi, W., Debowski, K., Descher, M., Díaz Barrero, D., Doe, P. J., Dragoun, O., Drexlin, G., Edzards, F., Eitel, K., Ellinger, E., Engel, R., Enomoto, S., Felden, A., Formaggio, J. A., Fränkle, F. M., Franklin, G. B., Friedel, F., Fulst, A., Gauda, K., Gavin, A. S., Gil, W., Glück, F., Grössle, R., Gumbsheimer, R., Hannen, V., Haußmann, N., Helbing, K., Hickford, S., Hiller, R., Hillesheimer, D., Hinz, D., Höhn, T., Houdy, T., Huber, A., Jansen, A., Karl, C., Kellerer, J., Kleifges, M., Klein, M., Köhler, C., Köllenberger, L., Kopmann, A., Korzeczek, M., Kovalík, A., Krasch, B., Krause, H., La Cascio, L., Lasserre, T., Le, T. L., Lebeda, O., Lehnert, B., Lokhov, A., Machatschek, M., Malcherek, E., Mark, M., Marsteller, A., Martin, E. L., Melzer, C., Mertens, S., Mostafa, J., Müller, K., Neumann, H., Niemes, S., Oelpmann, P., Parno, D. S., Poon, A. W. P., Poyato, J. M. L., Priester, F., Ráliš, J., Ramachandran, S., Robertson, R. G. H., Rodejohann, W., Rodenbeck, C., Röllig, M., Röttele, C., Ryšavý, M., Sack, R., Saenz, A., Salomon, R., Schäfer, P., Schimpf, L., Schlösser, M., Schlösser, K., Schlüter, L.
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container_issue 8
container_start_page
container_title Phys.Rev.D
container_volume 107
creator Aker, M.
Batzler, D.
Beglarian, A.
Behrens, J.
Berlev, A.
Besserer, U.
Bieringer, B.
Block, F.
Bobien, S.
Bornschein, B.
Bornschein, L.
Böttcher, M.
Brunst, T.
Caldwell, T. S.
Carney, R. M. D.
Chilingaryan, S.
Choi, W.
Debowski, K.
Descher, M.
Díaz Barrero, D.
Doe, P. J.
Dragoun, O.
Drexlin, G.
Edzards, F.
Eitel, K.
Ellinger, E.
Engel, R.
Enomoto, S.
Felden, A.
Formaggio, J. A.
Fränkle, F. M.
Franklin, G. B.
Friedel, F.
Fulst, A.
Gauda, K.
Gavin, A. S.
Gil, W.
Glück, F.
Grössle, R.
Gumbsheimer, R.
Hannen, V.
Haußmann, N.
Helbing, K.
Hickford, S.
Hiller, R.
Hillesheimer, D.
Hinz, D.
Höhn, T.
Houdy, T.
Huber, A.
Jansen, A.
Karl, C.
Kellerer, J.
Kleifges, M.
Klein, M.
Köhler, C.
Köllenberger, L.
Kopmann, A.
Korzeczek, M.
Kovalík, A.
Krasch, B.
Krause, H.
La Cascio, L.
Lasserre, T.
Le, T. L.
Lebeda, O.
Lehnert, B.
Lokhov, A.
Machatschek, M.
Malcherek, E.
Mark, M.
Marsteller, A.
Martin, E. L.
Melzer, C.
Mertens, S.
Mostafa, J.
Müller, K.
Neumann, H.
Niemes, S.
Oelpmann, P.
Parno, D. S.
Poon, A. W. P.
Poyato, J. M. L.
Priester, F.
Ráliš, J.
Ramachandran, S.
Robertson, R. G. H.
Rodejohann, W.
Rodenbeck, C.
Röllig, M.
Röttele, C.
Ryšavý, M.
Sack, R.
Saenz, A.
Salomon, R.
Schäfer, P.
Schimpf, L.
Schlösser, M.
Schlösser, K.
Schlüter, L.
description Some extensions of the Standard Model of Particle Physics allow for Lorentz invariance and Charge-Parity-Time (CPT)-invariance violations. In the neutrino sector strong constraints have been set by neutrino-oscillation and time-of-flight experiments. However, some Lorentz-invariance-violating parameters are not accessible via these probes. In this work, we focus on the parameters $(a_{\text{of}}^{(3)})_{00}$, $(a_{\text{of}}^{(3)})_{10}$ and $(a_{\text{of}}^{(3)})_{11}$ which would manifest themselves in a non-isotropic beta-decaying source as a sidereal oscillation and an overall shift of the spectral endpoint. Based on the data of the first scientific run of the KATRIN experiment, we set the first limit on $\left|(a_{\text{of}}^{(3)})_{11}\right|$ of $< 3.7\cdot10^{-6}$ GeV at 90% confidence level. Moreover, we derive new constraints on $(a_{\text{of}}^{(3)})_{00}$ and $(a_{\text{of}}^{(3)})_{10}$.
doi_str_mv 10.1103/PhysRevD.107.082005
format Article
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In the neutrino sector strong constraints have been set by neutrino-oscillation and time-of-flight experiments. However, some Lorentz-invariance-violating parameters are not accessible via these probes. In this work, we focus on the parameters $(a_{\text{of}}^{(3)})_{00}$, $(a_{\text{of}}^{(3)})_{10}$ and $(a_{\text{of}}^{(3)})_{11}$ which would manifest themselves in a non-isotropic beta-decaying source as a sidereal oscillation and an overall shift of the spectral endpoint. Based on the data of the first scientific run of the KATRIN experiment, we set the first limit on $\left|(a_{\text{of}}^{(3)})_{11}\right|$ of $&lt; 3.7\cdot10^{-6}$ GeV at 90% confidence level. Moreover, we derive new constraints on $(a_{\text{of}}^{(3)})_{00}$ and $(a_{\text{of}}^{(3)})_{10}$.</description><identifier>ISSN: 2470-0010</identifier><identifier>EISSN: 2470-0029</identifier><identifier>DOI: 10.1103/PhysRevD.107.082005</identifier><language>eng</language><publisher>United States: American Physical Society (APS)</publisher><subject>High Energy Physics - Experiment ; High Energy Physics - Phenomenology ; Lorentz symmetry ; Neutrinos ; Nuclear Experiment ; NUCLEAR PHYSICS AND RADIATION PHYSICS ; Particle astrophysics ; Particle properties ; Physics ; PHYSICS OF ELEMENTARY PARTICLES AND FIELDS ; Spectroscopy</subject><ispartof>Phys.Rev.D, 2023-04, Vol.107 (8), Article 082005</ispartof><rights>Distributed under a Creative Commons Attribution 4.0 International 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M.</creatorcontrib><creatorcontrib>Marsteller, A.</creatorcontrib><creatorcontrib>Martin, E. L.</creatorcontrib><creatorcontrib>Melzer, C.</creatorcontrib><creatorcontrib>Mertens, S.</creatorcontrib><creatorcontrib>Mostafa, J.</creatorcontrib><creatorcontrib>Müller, K.</creatorcontrib><creatorcontrib>Neumann, H.</creatorcontrib><creatorcontrib>Niemes, S.</creatorcontrib><creatorcontrib>Oelpmann, P.</creatorcontrib><creatorcontrib>Parno, D. S.</creatorcontrib><creatorcontrib>Poon, A. W. P.</creatorcontrib><creatorcontrib>Poyato, J. M. L.</creatorcontrib><creatorcontrib>Priester, F.</creatorcontrib><creatorcontrib>Ráliš, J.</creatorcontrib><creatorcontrib>Ramachandran, S.</creatorcontrib><creatorcontrib>Robertson, R. G. H.</creatorcontrib><creatorcontrib>Rodejohann, W.</creatorcontrib><creatorcontrib>Rodenbeck, C.</creatorcontrib><creatorcontrib>Röllig, M.</creatorcontrib><creatorcontrib>Röttele, C.</creatorcontrib><creatorcontrib>Ryšavý, M.</creatorcontrib><creatorcontrib>Sack, R.</creatorcontrib><creatorcontrib>Saenz, A.</creatorcontrib><creatorcontrib>Salomon, R.</creatorcontrib><creatorcontrib>Schäfer, P.</creatorcontrib><creatorcontrib>Schimpf, L.</creatorcontrib><creatorcontrib>Schlösser, M.</creatorcontrib><creatorcontrib>Schlösser, K.</creatorcontrib><creatorcontrib>Schlüter, L.</creatorcontrib><creatorcontrib>KATRIN Collaboration</creatorcontrib><creatorcontrib>Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA (United States)</creatorcontrib><creatorcontrib>University of North Carolina, Chapel Hill, NC (United States)</creatorcontrib><title>Search for Lorentz-invariance violation with the first KATRIN data</title><title>Phys.Rev.D</title><description>Some extensions of the Standard Model of Particle Physics allow for Lorentz invariance and Charge-Parity-Time (CPT)-invariance violations. In the neutrino sector strong constraints have been set by neutrino-oscillation and time-of-flight experiments. However, some Lorentz-invariance-violating parameters are not accessible via these probes. In this work, we focus on the parameters $(a_{\text{of}}^{(3)})_{00}$, $(a_{\text{of}}^{(3)})_{10}$ and $(a_{\text{of}}^{(3)})_{11}$ which would manifest themselves in a non-isotropic beta-decaying source as a sidereal oscillation and an overall shift of the spectral endpoint. Based on the data of the first scientific run of the KATRIN experiment, we set the first limit on $\left|(a_{\text{of}}^{(3)})_{11}\right|$ of $&lt; 3.7\cdot10^{-6}$ GeV at 90% confidence level. Moreover, we derive new constraints on $(a_{\text{of}}^{(3)})_{00}$ and $(a_{\text{of}}^{(3)})_{10}$.</description><subject>High Energy Physics - Experiment</subject><subject>High Energy Physics - Phenomenology</subject><subject>Lorentz symmetry</subject><subject>Neutrinos</subject><subject>Nuclear Experiment</subject><subject>NUCLEAR PHYSICS AND RADIATION PHYSICS</subject><subject>Particle astrophysics</subject><subject>Particle properties</subject><subject>Physics</subject><subject>PHYSICS OF ELEMENTARY PARTICLES AND 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J.</creator><creator>Müller, K.</creator><creator>Neumann, H.</creator><creator>Niemes, S.</creator><creator>Oelpmann, P.</creator><creator>Parno, D. S.</creator><creator>Poon, A. W. P.</creator><creator>Poyato, J. M. L.</creator><creator>Priester, F.</creator><creator>Ráliš, J.</creator><creator>Ramachandran, S.</creator><creator>Robertson, R. G. H.</creator><creator>Rodejohann, W.</creator><creator>Rodenbeck, C.</creator><creator>Röllig, M.</creator><creator>Röttele, C.</creator><creator>Ryšavý, M.</creator><creator>Sack, R.</creator><creator>Saenz, A.</creator><creator>Salomon, R.</creator><creator>Schäfer, P.</creator><creator>Schimpf, L.</creator><creator>Schlösser, M.</creator><creator>Schlösser, K.</creator><creator>Schlüter, L.</creator><general>American Physical Society (APS)</general><scope>AAYXX</scope><scope>CITATION</scope><scope>1XC</scope><scope>OIOZB</scope><scope>OTOTI</scope></search><sort><creationdate>20230426</creationdate><title>Search for Lorentz-invariance violation with the first KATRIN data</title><author>Aker, M. ; Batzler, D. ; Beglarian, A. ; Behrens, J. ; Berlev, A. ; Besserer, U. ; Bieringer, B. ; Block, F. ; Bobien, S. ; Bornschein, B. ; Bornschein, L. ; Böttcher, M. ; Brunst, T. ; Caldwell, T. S. ; Carney, R. M. D. ; Chilingaryan, S. ; Choi, W. ; Debowski, K. ; Descher, M. ; Díaz Barrero, D. ; Doe, P. J. ; Dragoun, O. ; Drexlin, G. ; Edzards, F. ; Eitel, K. ; Ellinger, E. ; Engel, R. ; Enomoto, S. ; Felden, A. ; Formaggio, J. A. ; Fränkle, F. M. ; Franklin, G. B. ; Friedel, F. ; Fulst, A. ; Gauda, K. ; Gavin, A. S. ; Gil, W. ; Glück, F. ; Grössle, R. ; Gumbsheimer, R. ; Hannen, V. ; Haußmann, N. ; Helbing, K. ; Hickford, S. ; Hiller, R. ; Hillesheimer, D. ; Hinz, D. ; Höhn, T. ; Houdy, T. ; Huber, A. ; Jansen, A. ; Karl, C. ; Kellerer, J. ; Kleifges, M. ; Klein, M. ; Köhler, C. ; Köllenberger, L. ; Kopmann, A. ; Korzeczek, M. ; Kovalík, A. ; Krasch, B. ; Krause, H. ; La Cascio, L. ; Lasserre, T. ; Le, T. L. ; Lebeda, O. ; Lehnert, B. ; Lokhov, A. ; Machatschek, M. ; Malcherek, E. ; Mark, M. ; Marsteller, A. ; Martin, E. L. ; Melzer, C. ; Mertens, S. ; Mostafa, J. ; Müller, K. ; Neumann, H. ; Niemes, S. ; Oelpmann, P. ; Parno, D. S. ; Poon, A. W. P. ; Poyato, J. M. L. ; Priester, F. ; Ráliš, J. ; Ramachandran, S. ; Robertson, R. G. H. ; Rodejohann, W. ; Rodenbeck, C. ; Röllig, M. ; Röttele, C. ; Ryšavý, M. ; Sack, R. ; Saenz, A. ; Salomon, R. ; Schäfer, P. ; Schimpf, L. ; Schlösser, M. ; Schlösser, K. ; Schlüter, L.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c310t-620d432dd12b046b9e450746fed31d132cc75b5d6c4b25b19af3b8fc296c4c773</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2023</creationdate><topic>High Energy Physics - Experiment</topic><topic>High Energy Physics - Phenomenology</topic><topic>Lorentz symmetry</topic><topic>Neutrinos</topic><topic>Nuclear Experiment</topic><topic>NUCLEAR PHYSICS AND RADIATION PHYSICS</topic><topic>Particle astrophysics</topic><topic>Particle properties</topic><topic>Physics</topic><topic>PHYSICS OF ELEMENTARY PARTICLES AND FIELDS</topic><topic>Spectroscopy</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Aker, M.</creatorcontrib><creatorcontrib>Batzler, D.</creatorcontrib><creatorcontrib>Beglarian, A.</creatorcontrib><creatorcontrib>Behrens, J.</creatorcontrib><creatorcontrib>Berlev, A.</creatorcontrib><creatorcontrib>Besserer, U.</creatorcontrib><creatorcontrib>Bieringer, B.</creatorcontrib><creatorcontrib>Block, F.</creatorcontrib><creatorcontrib>Bobien, S.</creatorcontrib><creatorcontrib>Bornschein, B.</creatorcontrib><creatorcontrib>Bornschein, L.</creatorcontrib><creatorcontrib>Böttcher, M.</creatorcontrib><creatorcontrib>Brunst, T.</creatorcontrib><creatorcontrib>Caldwell, T. S.</creatorcontrib><creatorcontrib>Carney, R. M. D.</creatorcontrib><creatorcontrib>Chilingaryan, 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States)</creatorcontrib><creatorcontrib>University of North Carolina, Chapel Hill, NC (United States)</creatorcontrib><collection>CrossRef</collection><collection>Hyper Article en Ligne (HAL)</collection><collection>OSTI.GOV - Hybrid</collection><collection>OSTI.GOV</collection><jtitle>Phys.Rev.D</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Aker, M.</au><au>Batzler, D.</au><au>Beglarian, A.</au><au>Behrens, J.</au><au>Berlev, A.</au><au>Besserer, U.</au><au>Bieringer, B.</au><au>Block, F.</au><au>Bobien, S.</au><au>Bornschein, B.</au><au>Bornschein, L.</au><au>Böttcher, M.</au><au>Brunst, T.</au><au>Caldwell, T. S.</au><au>Carney, R. M. D.</au><au>Chilingaryan, S.</au><au>Choi, W.</au><au>Debowski, K.</au><au>Descher, M.</au><au>Díaz Barrero, D.</au><au>Doe, P. J.</au><au>Dragoun, O.</au><au>Drexlin, G.</au><au>Edzards, F.</au><au>Eitel, K.</au><au>Ellinger, E.</au><au>Engel, R.</au><au>Enomoto, S.</au><au>Felden, A.</au><au>Formaggio, J. A.</au><au>Fränkle, F. M.</au><au>Franklin, G. B.</au><au>Friedel, F.</au><au>Fulst, A.</au><au>Gauda, K.</au><au>Gavin, A. S.</au><au>Gil, W.</au><au>Glück, F.</au><au>Grössle, R.</au><au>Gumbsheimer, R.</au><au>Hannen, V.</au><au>Haußmann, N.</au><au>Helbing, K.</au><au>Hickford, S.</au><au>Hiller, R.</au><au>Hillesheimer, D.</au><au>Hinz, D.</au><au>Höhn, T.</au><au>Houdy, T.</au><au>Huber, A.</au><au>Jansen, A.</au><au>Karl, C.</au><au>Kellerer, J.</au><au>Kleifges, M.</au><au>Klein, M.</au><au>Köhler, C.</au><au>Köllenberger, L.</au><au>Kopmann, A.</au><au>Korzeczek, M.</au><au>Kovalík, A.</au><au>Krasch, B.</au><au>Krause, H.</au><au>La Cascio, L.</au><au>Lasserre, T.</au><au>Le, T. L.</au><au>Lebeda, O.</au><au>Lehnert, B.</au><au>Lokhov, A.</au><au>Machatschek, M.</au><au>Malcherek, E.</au><au>Mark, M.</au><au>Marsteller, A.</au><au>Martin, E. L.</au><au>Melzer, C.</au><au>Mertens, S.</au><au>Mostafa, J.</au><au>Müller, K.</au><au>Neumann, H.</au><au>Niemes, S.</au><au>Oelpmann, P.</au><au>Parno, D. S.</au><au>Poon, A. W. P.</au><au>Poyato, J. M. L.</au><au>Priester, F.</au><au>Ráliš, J.</au><au>Ramachandran, S.</au><au>Robertson, R. G. H.</au><au>Rodejohann, W.</au><au>Rodenbeck, C.</au><au>Röllig, M.</au><au>Röttele, C.</au><au>Ryšavý, M.</au><au>Sack, R.</au><au>Saenz, A.</au><au>Salomon, R.</au><au>Schäfer, P.</au><au>Schimpf, L.</au><au>Schlösser, M.</au><au>Schlösser, K.</au><au>Schlüter, L.</au><aucorp>KATRIN Collaboration</aucorp><aucorp>Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA (United States)</aucorp><aucorp>University of North Carolina, Chapel Hill, NC (United States)</aucorp><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Search for Lorentz-invariance violation with the first KATRIN data</atitle><jtitle>Phys.Rev.D</jtitle><date>2023-04-26</date><risdate>2023</risdate><volume>107</volume><issue>8</issue><artnum>082005</artnum><issn>2470-0010</issn><eissn>2470-0029</eissn><abstract>Some extensions of the Standard Model of Particle Physics allow for Lorentz invariance and Charge-Parity-Time (CPT)-invariance violations. In the neutrino sector strong constraints have been set by neutrino-oscillation and time-of-flight experiments. However, some Lorentz-invariance-violating parameters are not accessible via these probes. In this work, we focus on the parameters $(a_{\text{of}}^{(3)})_{00}$, $(a_{\text{of}}^{(3)})_{10}$ and $(a_{\text{of}}^{(3)})_{11}$ which would manifest themselves in a non-isotropic beta-decaying source as a sidereal oscillation and an overall shift of the spectral endpoint. Based on the data of the first scientific run of the KATRIN experiment, we set the first limit on $\left|(a_{\text{of}}^{(3)})_{11}\right|$ of $&lt; 3.7\cdot10^{-6}$ GeV at 90% confidence level. Moreover, we derive new constraints on $(a_{\text{of}}^{(3)})_{00}$ and $(a_{\text{of}}^{(3)})_{10}$.</abstract><cop>United States</cop><pub>American Physical Society (APS)</pub><doi>10.1103/PhysRevD.107.082005</doi><oa>free_for_read</oa></addata></record>
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recordid cdi_osti_scitechconnect_1976079
source American Physical Society Journals
subjects High Energy Physics - Experiment
High Energy Physics - Phenomenology
Lorentz symmetry
Neutrinos
Nuclear Experiment
NUCLEAR PHYSICS AND RADIATION PHYSICS
Particle astrophysics
Particle properties
Physics
PHYSICS OF ELEMENTARY PARTICLES AND FIELDS
Spectroscopy
title Search for Lorentz-invariance violation with the first KATRIN data
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