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Test of non-commutative QED in the process $e^{+}e^{-} \to \gamma \gamma$ at LEP
Non-communicative QED would lead to deviations from the Standard Model depending on a new energy scale $\Delta_{NC}$ and a unique direction in space defined by two angles $\eta$ and $\xi$. Here in this analysis $\eta$ is defined as the angle between the unique direction and the rotation axis of the...
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Lenguaje: | eng |
Publicado: |
2003
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1016/j.physletb.2003.05.008 http://cds.cern.ch/record/609953 |
_version_ | 1780900174224162816 |
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author | Abbiendi, G. Ainsley, C. Akesson, P.F. Alexander, G. Allison, John Amaral, P. Anagnostou, G. Anderson, K.J. Arcelli, S. Asai, S. Axen, D. Azuelos, G. Bailey, I. Barberio, E. Barlow, R.J. Batley, R.J. Bechtle, P. Behnke, T. Bell, Kenneth Watson Bell, P.J. Bella, G. Bellerive, A. Benelli, G. Bethke, S. Biebel, O. Bloodworth, I.J. Boeriu, O. Bock, P. Bonacorsi, D. Boutemeur, M. Braibant, S. Brigliadori, L. Brown, Robert M. Buesser, K. Burckhart, H.J. Campana, S. Carnegie, R.K. Caron, B. Carter, A.A. Carter, J.R. Chang, C.Y. Charlton, David G. Csilling, A. Cuffiani, M. Dado, S. De Roeck, A. De Wolf, E.A. Desch, K. Dienes, B. Donkers, M. Dubbert, J. Duchovni, E. Duckeck, G. Duerdoth, I.P. Elfgren, E. Etzion, E. Fabbri, F. Feld, L. Ferrari, P. Fiedler, F. Fleck, I. Ford, M. Frey, A. Furtjes, A. Gagnon, P. Gary, John William Gaycken, G. Geich-Gimbel, C. Giacomelli, G. Giacomelli, P. Giunta, Marina Goldberg, J. Gross, E. Grunhaus, J. Gruwe, M. Gunther, P.O. Gupta, A. Hajdu, C. Hamann, M. Hanson, G.G. Harder, K. Harel, A. Harin-Dirac, M. Hauschild, M. Hawkes, C.M. Hawkings, R. Hemingway, R.J. Hensel, C. Herten, G. Heuer, R.D. Hill, J.C. Hoffman, Kara Dion Homer, R.J. Horvath, D. Igo-Kemenes, P. Ishii, K. Jeremie, H. Jovanovic, P. Junk, T.R. Kanaya, N. Kanzaki, J. Karapetian, G. Karlen, D. Kawagoe, K. Kawamoto, T. Keeler, R.K. Kellogg, R.G. Kennedy, B.W. Kim, D.H. Klein, K. Klier, A. Kluth, S. Kobayashi, T. Kobel, M. Komamiya, S. Kormos, Laura L. Kramer, T. Kress, T. Krieger, P. von Krogh, J. Kruger, K. Kuhl, T. Kupper, M. Lafferty, G.D. Landsman, H. Lanske, D. Layter, J.G. Leins, A. Lellouch, D. Lettso, J. Levinson, L. Lillich, J. Lloyd, S.L. Loebinger, F.K. Lu, J. Ludwig, J. Macpherson, A. Mader, W. Marcellini, S. Martin, A.J. Masetti, G. Mashimo, T. Mattig, Peter McDonald, W.J. McKenna, J. McMahon, T.J. McPherson, R.A. Meijers, F. Menges, W. Merritt, F.S. Mes, H. Michelini, A. Mihara, S. Mikenberg, G. Miller, D.J. Moed, S. Mohr, W. Mori, T. Mutter, A. Nagai, K. Nakamura, I. Neal, H.A. Nisius, R. O'Neale, S.W. Oh, A. Okpara, A. Oreglia, M.J. Orito, S. Pahl, C. Pasztor, G. Pater, J.R. Patrick, G.N. Pilcher, J.E. Pinfold, J. Plane, David E. Poli, B. Polok, J. Pooth, O. Przybycien, M. Quadt, A. Rabbertz, K. Rembser, C. Renkel, P. Rick, H. Roney, J.M. Rosati, S. Rozen, Y. Runge, K. Sachs, K. Saeki, T. Sarkisyan, E.K.G. Schaile, A.D. Schaile, O. Scharff-Hansen, P. Schieck, J. Schoerner-Sadenius, Thomas Schroder, Matthias Schumacher, M. Schwick, C. Scott, W.G. Seuster, R. Shears, T.G. Shen, B.C. Sherwood, P. Siroli, G. Skuja, A. Smith, A.M. Sobie, R. Soldner-Rembold, S. Spano, F. Stahl, A. Stephens, K. Strom, David M. Strohmer, R. Tarem, S. Tasevsky, M. Taylor, R.J. Teuscher, R. Thomson, M.A. Torrence, E. Toya, D. Tran, P. Tricoli, A. Trigger, I. Trocsanyi, Z. Tsur, E. Turner-Watson, M.F. Ueda, I. Ujvari, B. Vollmer, C.F. Vannerem, P. Vertesi, R. Verzocchi, M. Voss, H. Vossebeld, J. Waller, D. Ward, C.P. Ward, D.R. Watkins, P.M. Watson, A.T. Watson, N.K. Wells, P.S. Wengler, T. Wermes, N. Wetterling, D. Wilson, G.W. Wilson, J.A. Wolf, G. Wyatt, T.R. Yamashita, S. Zer-Zion, D. Zivkovic, Lidija |
author_facet | Abbiendi, G. Ainsley, C. Akesson, P.F. Alexander, G. Allison, John Amaral, P. Anagnostou, G. Anderson, K.J. Arcelli, S. Asai, S. Axen, D. Azuelos, G. Bailey, I. Barberio, E. Barlow, R.J. Batley, R.J. Bechtle, P. Behnke, T. Bell, Kenneth Watson Bell, P.J. Bella, G. Bellerive, A. Benelli, G. Bethke, S. Biebel, O. Bloodworth, I.J. Boeriu, O. Bock, P. Bonacorsi, D. Boutemeur, M. Braibant, S. Brigliadori, L. Brown, Robert M. Buesser, K. Burckhart, H.J. Campana, S. Carnegie, R.K. Caron, B. Carter, A.A. Carter, J.R. Chang, C.Y. Charlton, David G. Csilling, A. Cuffiani, M. Dado, S. De Roeck, A. De Wolf, E.A. Desch, K. Dienes, B. Donkers, M. Dubbert, J. Duchovni, E. Duckeck, G. Duerdoth, I.P. Elfgren, E. Etzion, E. Fabbri, F. Feld, L. Ferrari, P. Fiedler, F. Fleck, I. Ford, M. Frey, A. Furtjes, A. Gagnon, P. Gary, John William Gaycken, G. Geich-Gimbel, C. Giacomelli, G. Giacomelli, P. Giunta, Marina Goldberg, J. Gross, E. Grunhaus, J. Gruwe, M. Gunther, P.O. Gupta, A. Hajdu, C. Hamann, M. Hanson, G.G. Harder, K. Harel, A. Harin-Dirac, M. Hauschild, M. Hawkes, C.M. Hawkings, R. Hemingway, R.J. Hensel, C. Herten, G. Heuer, R.D. Hill, J.C. Hoffman, Kara Dion Homer, R.J. Horvath, D. Igo-Kemenes, P. Ishii, K. Jeremie, H. Jovanovic, P. Junk, T.R. Kanaya, N. Kanzaki, J. Karapetian, G. Karlen, D. Kawagoe, K. Kawamoto, T. Keeler, R.K. Kellogg, R.G. Kennedy, B.W. Kim, D.H. Klein, K. Klier, A. Kluth, S. Kobayashi, T. Kobel, M. Komamiya, S. Kormos, Laura L. Kramer, T. Kress, T. Krieger, P. von Krogh, J. Kruger, K. Kuhl, T. Kupper, M. Lafferty, G.D. Landsman, H. Lanske, D. Layter, J.G. Leins, A. Lellouch, D. Lettso, J. Levinson, L. Lillich, J. Lloyd, S.L. Loebinger, F.K. Lu, J. Ludwig, J. Macpherson, A. Mader, W. Marcellini, S. Martin, A.J. Masetti, G. Mashimo, T. Mattig, Peter McDonald, W.J. McKenna, J. McMahon, T.J. McPherson, R.A. Meijers, F. Menges, W. Merritt, F.S. Mes, H. Michelini, A. Mihara, S. Mikenberg, G. Miller, D.J. Moed, S. Mohr, W. Mori, T. Mutter, A. Nagai, K. Nakamura, I. Neal, H.A. Nisius, R. O'Neale, S.W. Oh, A. Okpara, A. Oreglia, M.J. Orito, S. Pahl, C. Pasztor, G. Pater, J.R. Patrick, G.N. Pilcher, J.E. Pinfold, J. Plane, David E. Poli, B. Polok, J. Pooth, O. Przybycien, M. Quadt, A. Rabbertz, K. Rembser, C. Renkel, P. Rick, H. Roney, J.M. Rosati, S. Rozen, Y. Runge, K. Sachs, K. Saeki, T. Sarkisyan, E.K.G. Schaile, A.D. Schaile, O. Scharff-Hansen, P. Schieck, J. Schoerner-Sadenius, Thomas Schroder, Matthias Schumacher, M. Schwick, C. Scott, W.G. Seuster, R. Shears, T.G. Shen, B.C. Sherwood, P. Siroli, G. Skuja, A. Smith, A.M. Sobie, R. Soldner-Rembold, S. Spano, F. Stahl, A. Stephens, K. Strom, David M. Strohmer, R. Tarem, S. Tasevsky, M. Taylor, R.J. Teuscher, R. Thomson, M.A. Torrence, E. Toya, D. Tran, P. Tricoli, A. Trigger, I. Trocsanyi, Z. Tsur, E. Turner-Watson, M.F. Ueda, I. Ujvari, B. Vollmer, C.F. Vannerem, P. Vertesi, R. Verzocchi, M. Voss, H. Vossebeld, J. Waller, D. Ward, C.P. Ward, D.R. Watkins, P.M. Watson, A.T. Watson, N.K. Wells, P.S. Wengler, T. Wermes, N. Wetterling, D. Wilson, G.W. Wilson, J.A. Wolf, G. Wyatt, T.R. Yamashita, S. Zer-Zion, D. Zivkovic, Lidija |
author_sort | Abbiendi, G. |
collection | CERN |
description | Non-communicative QED would lead to deviations from the Standard Model depending on a new energy scale $\Delta_{NC}$ and a unique direction in space defined by two angles $\eta$ and $\xi$. Here in this analysis $\eta$ is defined as the angle between the unique direction and the rotation axis of the earth. The predictions of such a theory for the process $e^{+} e^{-} \to \gamma \gamma$ are evalued for the specific orientation of the OPAL detector and compared to the measurements. Distributions of the polar and azimuthal scattering angles are used to extract limits on the energy scale $\Delta_{NC}$ depending on the model parameter $\eta$. At the 95% confidence level $\Delta_{NC}$ is found to be larger than 141 GeV for all $\eta$ and $\xi$. It is shown that the time dependence of the total cross-section could be used to determine the model parameter $\xi$ if there were a detectable signal. These are the first limits obtained on non-commutative QED from an $e^{+} e^{-}$ collider experiment. |
id | cern-609953 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2003 |
record_format | invenio |
spelling | cern-6099532021-10-29T02:11:01Zdoi:10.1016/j.physletb.2003.05.008http://cds.cern.ch/record/609953engAbbiendi, G.Ainsley, C.Akesson, P.F.Alexander, G.Allison, JohnAmaral, P.Anagnostou, G.Anderson, K.J.Arcelli, S.Asai, S.Axen, D.Azuelos, G.Bailey, I.Barberio, E.Barlow, R.J.Batley, R.J.Bechtle, P.Behnke, T.Bell, Kenneth WatsonBell, P.J.Bella, G.Bellerive, A.Benelli, G.Bethke, S.Biebel, O.Bloodworth, I.J.Boeriu, O.Bock, P.Bonacorsi, D.Boutemeur, M.Braibant, S.Brigliadori, L.Brown, Robert M.Buesser, K.Burckhart, H.J.Campana, S.Carnegie, R.K.Caron, B.Carter, A.A.Carter, J.R.Chang, C.Y.Charlton, David G.Csilling, A.Cuffiani, M.Dado, S.De Roeck, A.De Wolf, E.A.Desch, K.Dienes, B.Donkers, M.Dubbert, J.Duchovni, E.Duckeck, G.Duerdoth, I.P.Elfgren, E.Etzion, E.Fabbri, F.Feld, L.Ferrari, P.Fiedler, F.Fleck, I.Ford, M.Frey, A.Furtjes, A.Gagnon, P.Gary, John WilliamGaycken, G.Geich-Gimbel, C.Giacomelli, G.Giacomelli, P.Giunta, MarinaGoldberg, J.Gross, E.Grunhaus, J.Gruwe, M.Gunther, P.O.Gupta, A.Hajdu, C.Hamann, M.Hanson, G.G.Harder, K.Harel, A.Harin-Dirac, M.Hauschild, M.Hawkes, C.M.Hawkings, R.Hemingway, R.J.Hensel, C.Herten, G.Heuer, R.D.Hill, J.C.Hoffman, Kara DionHomer, R.J.Horvath, D.Igo-Kemenes, P.Ishii, K.Jeremie, H.Jovanovic, P.Junk, T.R.Kanaya, N.Kanzaki, J.Karapetian, G.Karlen, D.Kawagoe, K.Kawamoto, T.Keeler, R.K.Kellogg, R.G.Kennedy, B.W.Kim, D.H.Klein, K.Klier, A.Kluth, S.Kobayashi, T.Kobel, M.Komamiya, S.Kormos, Laura L.Kramer, T.Kress, T.Krieger, P.von Krogh, J.Kruger, K.Kuhl, T.Kupper, M.Lafferty, G.D.Landsman, H.Lanske, D.Layter, J.G.Leins, A.Lellouch, D.Lettso, J.Levinson, L.Lillich, J.Lloyd, S.L.Loebinger, F.K.Lu, J.Ludwig, J.Macpherson, A.Mader, W.Marcellini, S.Martin, A.J.Masetti, G.Mashimo, T.Mattig, PeterMcDonald, W.J.McKenna, J.McMahon, T.J.McPherson, R.A.Meijers, F.Menges, W.Merritt, F.S.Mes, H.Michelini, A.Mihara, S.Mikenberg, G.Miller, D.J.Moed, S.Mohr, W.Mori, T.Mutter, A.Nagai, K.Nakamura, I.Neal, H.A.Nisius, R.O'Neale, S.W.Oh, A.Okpara, A.Oreglia, M.J.Orito, S.Pahl, C.Pasztor, G.Pater, J.R.Patrick, G.N.Pilcher, J.E.Pinfold, J.Plane, David E.Poli, B.Polok, J.Pooth, O.Przybycien, M.Quadt, A.Rabbertz, K.Rembser, C.Renkel, P.Rick, H.Roney, J.M.Rosati, S.Rozen, Y.Runge, K.Sachs, K.Saeki, T.Sarkisyan, E.K.G.Schaile, A.D.Schaile, O.Scharff-Hansen, P.Schieck, J.Schoerner-Sadenius, ThomasSchroder, MatthiasSchumacher, M.Schwick, C.Scott, W.G.Seuster, R.Shears, T.G.Shen, B.C.Sherwood, P.Siroli, G.Skuja, A.Smith, A.M.Sobie, R.Soldner-Rembold, S.Spano, F.Stahl, A.Stephens, K.Strom, David M.Strohmer, R.Tarem, S.Tasevsky, M.Taylor, R.J.Teuscher, R.Thomson, M.A.Torrence, E.Toya, D.Tran, P.Tricoli, A.Trigger, I.Trocsanyi, Z.Tsur, E.Turner-Watson, M.F.Ueda, I.Ujvari, B.Vollmer, C.F.Vannerem, P.Vertesi, R.Verzocchi, M.Voss, H.Vossebeld, J.Waller, D.Ward, C.P.Ward, D.R.Watkins, P.M.Watson, A.T.Watson, N.K.Wells, P.S.Wengler, T.Wermes, N.Wetterling, D.Wilson, G.W.Wilson, J.A.Wolf, G.Wyatt, T.R.Yamashita, S.Zer-Zion, D.Zivkovic, LidijaTest of non-commutative QED in the process $e^{+}e^{-} \to \gamma \gamma$ at LEPParticle Physics - ExperimentNon-communicative QED would lead to deviations from the Standard Model depending on a new energy scale $\Delta_{NC}$ and a unique direction in space defined by two angles $\eta$ and $\xi$. Here in this analysis $\eta$ is defined as the angle between the unique direction and the rotation axis of the earth. The predictions of such a theory for the process $e^{+} e^{-} \to \gamma \gamma$ are evalued for the specific orientation of the OPAL detector and compared to the measurements. Distributions of the polar and azimuthal scattering angles are used to extract limits on the energy scale $\Delta_{NC}$ depending on the model parameter $\eta$. At the 95% confidence level $\Delta_{NC}$ is found to be larger than 141 GeV for all $\eta$ and $\xi$. It is shown that the time dependence of the total cross-section could be used to determine the model parameter $\xi$ if there were a detectable signal. These are the first limits obtained on non-commutative QED from an $e^{+} e^{-}$ collider experiment.Non-commutative QED would lead to deviations from the Standard Model depending on a new energy scale Λ NC and a unique direction in space defined by two angles η and ξ . In this analysis, η is defined as the angle between the unique direction and the rotation axis of the earth. The predictions of a tree level calculation for the process e + e − → γγ are evaluated for the specific orientation of the OPAL detector and compared to the measurements. Distributions of the polar and azimuthal photon angles are used to extract limits on the energy scale Λ NC depending on the model parameter η . It is shown that the time dependence of the total cross-section could be used to determine the model parameter ξ if there were a detectable signal. This is the first experimental study of non-commutative QED at an e + e − collider.Non-commutative QED would lead to deviations from the Standard Model depending on a new energy scale Lambda_NC and a unique direction in space defined by two angles eta and xi. Here in this analysis eta is defined as the angle between the unique direction and the rotation axis of the earth. The predictions of such a theory for the process e+e- -> gamma gamma are evaluated for the specific orientation of the OPAL detector and compared to the measurements. Distributions of the polar and azimuthal scattering angles are used to extract limits on the energy scale Lambda_NC depending on the model parameter eta. At the 95% confidence level Lambda_NC is found to be larger than 141 GeV for all eta and xi. It is shown that the time dependence of the total cross-section could be used to determine the model parameter xi if there were a detectable signal. These are the first limits obtained on non-commutative QED from an e+e- collider experiment.hep-ex/0303035CERN-EP-2003-010CERN-EP-2003-010oai:cds.cern.ch:6099532003-03-05 |
spellingShingle | Particle Physics - Experiment Abbiendi, G. Ainsley, C. Akesson, P.F. Alexander, G. Allison, John Amaral, P. Anagnostou, G. Anderson, K.J. Arcelli, S. Asai, S. Axen, D. Azuelos, G. Bailey, I. Barberio, E. Barlow, R.J. Batley, R.J. Bechtle, P. Behnke, T. Bell, Kenneth Watson Bell, P.J. Bella, G. Bellerive, A. Benelli, G. Bethke, S. Biebel, O. Bloodworth, I.J. Boeriu, O. Bock, P. Bonacorsi, D. Boutemeur, M. Braibant, S. Brigliadori, L. Brown, Robert M. Buesser, K. Burckhart, H.J. Campana, S. Carnegie, R.K. Caron, B. Carter, A.A. Carter, J.R. Chang, C.Y. Charlton, David G. Csilling, A. Cuffiani, M. Dado, S. De Roeck, A. De Wolf, E.A. Desch, K. Dienes, B. Donkers, M. Dubbert, J. Duchovni, E. Duckeck, G. Duerdoth, I.P. Elfgren, E. Etzion, E. Fabbri, F. Feld, L. Ferrari, P. Fiedler, F. Fleck, I. Ford, M. Frey, A. Furtjes, A. Gagnon, P. Gary, John William Gaycken, G. Geich-Gimbel, C. Giacomelli, G. Giacomelli, P. Giunta, Marina Goldberg, J. Gross, E. Grunhaus, J. Gruwe, M. Gunther, P.O. Gupta, A. Hajdu, C. Hamann, M. Hanson, G.G. Harder, K. Harel, A. Harin-Dirac, M. Hauschild, M. Hawkes, C.M. Hawkings, R. Hemingway, R.J. Hensel, C. Herten, G. Heuer, R.D. Hill, J.C. Hoffman, Kara Dion Homer, R.J. Horvath, D. Igo-Kemenes, P. Ishii, K. Jeremie, H. Jovanovic, P. Junk, T.R. Kanaya, N. Kanzaki, J. Karapetian, G. Karlen, D. Kawagoe, K. Kawamoto, T. Keeler, R.K. Kellogg, R.G. Kennedy, B.W. Kim, D.H. Klein, K. Klier, A. Kluth, S. Kobayashi, T. Kobel, M. Komamiya, S. Kormos, Laura L. Kramer, T. Kress, T. Krieger, P. von Krogh, J. Kruger, K. Kuhl, T. Kupper, M. Lafferty, G.D. Landsman, H. Lanske, D. Layter, J.G. Leins, A. Lellouch, D. Lettso, J. Levinson, L. Lillich, J. Lloyd, S.L. Loebinger, F.K. Lu, J. Ludwig, J. Macpherson, A. Mader, W. Marcellini, S. Martin, A.J. Masetti, G. Mashimo, T. Mattig, Peter McDonald, W.J. McKenna, J. McMahon, T.J. McPherson, R.A. Meijers, F. Menges, W. Merritt, F.S. Mes, H. Michelini, A. Mihara, S. Mikenberg, G. Miller, D.J. Moed, S. Mohr, W. Mori, T. Mutter, A. Nagai, K. Nakamura, I. Neal, H.A. Nisius, R. O'Neale, S.W. Oh, A. Okpara, A. Oreglia, M.J. Orito, S. Pahl, C. Pasztor, G. Pater, J.R. Patrick, G.N. Pilcher, J.E. Pinfold, J. Plane, David E. Poli, B. Polok, J. Pooth, O. Przybycien, M. Quadt, A. Rabbertz, K. Rembser, C. Renkel, P. Rick, H. Roney, J.M. Rosati, S. Rozen, Y. Runge, K. Sachs, K. Saeki, T. Sarkisyan, E.K.G. Schaile, A.D. Schaile, O. Scharff-Hansen, P. Schieck, J. Schoerner-Sadenius, Thomas Schroder, Matthias Schumacher, M. Schwick, C. Scott, W.G. Seuster, R. Shears, T.G. Shen, B.C. Sherwood, P. Siroli, G. Skuja, A. Smith, A.M. Sobie, R. Soldner-Rembold, S. Spano, F. Stahl, A. Stephens, K. Strom, David M. Strohmer, R. Tarem, S. Tasevsky, M. Taylor, R.J. Teuscher, R. Thomson, M.A. Torrence, E. Toya, D. Tran, P. Tricoli, A. Trigger, I. Trocsanyi, Z. Tsur, E. Turner-Watson, M.F. Ueda, I. Ujvari, B. Vollmer, C.F. Vannerem, P. Vertesi, R. Verzocchi, M. Voss, H. Vossebeld, J. Waller, D. Ward, C.P. Ward, D.R. Watkins, P.M. Watson, A.T. Watson, N.K. Wells, P.S. Wengler, T. Wermes, N. Wetterling, D. Wilson, G.W. Wilson, J.A. Wolf, G. Wyatt, T.R. Yamashita, S. Zer-Zion, D. Zivkovic, Lidija Test of non-commutative QED in the process $e^{+}e^{-} \to \gamma \gamma$ at LEP |
title | Test of non-commutative QED in the process $e^{+}e^{-} \to \gamma \gamma$ at LEP |
title_full | Test of non-commutative QED in the process $e^{+}e^{-} \to \gamma \gamma$ at LEP |
title_fullStr | Test of non-commutative QED in the process $e^{+}e^{-} \to \gamma \gamma$ at LEP |
title_full_unstemmed | Test of non-commutative QED in the process $e^{+}e^{-} \to \gamma \gamma$ at LEP |
title_short | Test of non-commutative QED in the process $e^{+}e^{-} \to \gamma \gamma$ at LEP |
title_sort | test of non-commutative qed in the process $e^{+}e^{-} \to \gamma \gamma$ at lep |
topic | Particle Physics - Experiment |
url | https://dx.doi.org/10.1016/j.physletb.2003.05.008 http://cds.cern.ch/record/609953 |
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