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Experimental studies of unbiased gluon jets from $e^{+}e^{-}$ annihilations using the jet boost algorithm

We present the first experimental results based on the jet boost algorithm, a technique to select unbiased samples of gluon jets in e+e- annihilations, i.e. gluon jets free of biases introduced by event selection or jet finding criteria. Our results are derived from hadronic Z0 decays observed with...

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Detalles Bibliográficos
Autores principales: 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., Boeriu, O., Bock, P., 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., 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, 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., 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., Letts, 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., Nanjo, H., 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., 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., Warsinsky, M., 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
Lenguaje:eng
Publicado: 2003
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.69.032002
http://cds.cern.ch/record/678203
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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.
Boeriu, O.
Bock, P.
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.
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
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.
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.
Letts, 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.
Nanjo, H.
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.
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.
Warsinsky, M.
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.
Boeriu, O.
Bock, P.
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.
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
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.
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.
Letts, 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.
Nanjo, H.
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.
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.
Warsinsky, M.
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 We present the first experimental results based on the jet boost algorithm, a technique to select unbiased samples of gluon jets in e+e- annihilations, i.e. gluon jets free of biases introduced by event selection or jet finding criteria. Our results are derived from hadronic Z0 decays observed with the OPAL detector at the LEP e+e- collider at CERN. First, we test the boost algorithm through studies with Herwig Monte Carlo events and find that it provides accurate measurements of the charged particle multiplicity distributions of unbiased gluon jets for jet energies larger than about 5 GeV, and of the jet particle energy spectra (fragmentation functions) for jet energies larger than about 14 GeV. Second, we apply the boost algorithm to our data to derive unbiased measurements of the gluon jet multiplicity distribution for energies between about 5 and 18 GeV, and of the gluon jet fragmentation function at 14 and 18 GeV. In conjunction with our earlier results at 40 GeV, we then test QCD calculations for the energy evolution of the distributions, specifically the mean and first two non-trivial normalized factorial moments of the multiplicity distribution, and the fragmentation function. The theoretical results are found to be in global agreement with the data, although the factorial moments are not well described for jet energies below about 14 GeV.
id cern-678203
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2003
record_format invenio
spelling cern-6782032021-10-29T02:23:16Zdoi:10.1103/PhysRevD.69.032002http://cds.cern.ch/record/678203engAbbiendi, 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.Boeriu, O.Bock, P.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.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 DionHorvath, 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.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.Letts, 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.Nanjo, H.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.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.Warsinsky, M.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, LidijaExperimental studies of unbiased gluon jets from $e^{+}e^{-}$ annihilations using the jet boost algorithmParticle Physics - ExperimentWe present the first experimental results based on the jet boost algorithm, a technique to select unbiased samples of gluon jets in e+e- annihilations, i.e. gluon jets free of biases introduced by event selection or jet finding criteria. Our results are derived from hadronic Z0 decays observed with the OPAL detector at the LEP e+e- collider at CERN. First, we test the boost algorithm through studies with Herwig Monte Carlo events and find that it provides accurate measurements of the charged particle multiplicity distributions of unbiased gluon jets for jet energies larger than about 5 GeV, and of the jet particle energy spectra (fragmentation functions) for jet energies larger than about 14 GeV. Second, we apply the boost algorithm to our data to derive unbiased measurements of the gluon jet multiplicity distribution for energies between about 5 and 18 GeV, and of the gluon jet fragmentation function at 14 and 18 GeV. In conjunction with our earlier results at 40 GeV, we then test QCD calculations for the energy evolution of the distributions, specifically the mean and first two non-trivial normalized factorial moments of the multiplicity distribution, and the fragmentation function. The theoretical results are found to be in global agreement with the data, although the factorial moments are not well described for jet energies below about 14 GeV.We present the first experimental results based on the jet boost algorithm, a technique to select unbiased samples of gluon jets in e+e- annihilations, i.e. gluon jets free of biases introduced by event selection or jet finding criteria. Our results are derived from hadronic Z0 decays observed with the OPAL detector at the LEP e+e- collider at CERN. First, we test the boost algorithm through studies with Herwig Monte Carlo events and find that it provides accurate measurements of the charged particle multiplicity distributions of unbiased gluon jets for jet energies larger than about 5 GeV, and of the jet particle energy spectra (fragmentation functions) for jet energies larger than about 14 GeV. Second, we apply the boost algorithm to our data to derive unbiased measurements of the gluon jet multiplicity distribution for energies between about 5 and 18 GeV, and of the gluon jet fragmentation function at 14 and 18 GeV. In conjunction with our earlier results at 40 GeV, we then test QCD calculations for the energy evolution of the distributions, specifically the mean and first two non-trivial normalized factorial moments of the multiplicity distribution, and the fragmentation function. The theoretical results are found to be in global agreement with the data, although the factorial moments are not well described for jet energies below about 14 GeV.We present the first experimental results based on the jet boost algorithm, a technique to select unbiased samples of gluon jets in e+e- annihilations, i.e. gluon jets free of biases introduced by event selection or jet finding criteria. Our results are derived from hadronic Z0 decays observed with the OPAL detector at the LEP e+e- collider at CERN. First, we test the boost algorithm through studies with Herwig Monte Carlo events and find that it provides accurate measurements of the charged particle multiplicity distributions of unbiased gluon jets for jet energies larger than about 5 GeV, and of the jet particle energy spectra (fragmentation functions) for jet energies larger than about 14 GeV. Second, we apply the boost algorithm to our data to derive unbiased measurements of the gluon jet multiplicity distribution for energies between about 5 and 18 GeV, and of the gluon jet fragmentation function at 14 and 18 GeV. In conjunction with our earlier results at 40 GeV, we then test QCD calculations for the energy evolution of the distributions, specifically the mean and first two non-trivial normalized factorial moments of the multiplicity distribution, and the fragmentation function. The theoretical results are found to be in global agreement with the data, although the factorial moments are not well described for jet energies below about 14 GeV.We present the first experimental results based on the jet boost algorithm, a technique to select unbiased samples of gluon jets in e+e- annihilations, i.e. gluon jets free of biases introduced by event selection or jet finding criteria. Our results are derived from hadronic Z0 decays observed with the OPAL detector at the LEP e+e- collider at CERN. First, we test the boost algorithm through studies with Herwig Monte Carlo events and find that it provides accurate measurements of the charged particle multiplicity distributions of unbiased gluon jets for jet energies larger than about 5 GeV, and of the jet particle energy spectra (fragmentation functions) for jet energies larger than about 14 GeV. Second, we apply the boost algorithm to our data to derive unbiased measurements of the gluon jet multiplicity distribution for energies between about 5 and 18 GeV, and of the gluon jet fragmentation function at 14 and 18 GeV. In conjunction with our earlier results at 40 GeV, we then test QCD calculations for the energy evolution of the distributions, specifically the mean and first two non-trivial normalized factorial moments of the multiplicity distribution, and the fragmentation function. The theoretical results are found to be in global agreement with the data, although the factorial moments are not well described for jet energies below about 14 GeV.hep-ex/0310048CERN-EP-2003-067CERN-EP-2003-067oai:cds.cern.ch:6782032003-10-09
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.
Boeriu, O.
Bock, P.
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.
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
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.
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.
Letts, 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.
Nanjo, H.
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.
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.
Warsinsky, M.
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
Experimental studies of unbiased gluon jets from $e^{+}e^{-}$ annihilations using the jet boost algorithm
title Experimental studies of unbiased gluon jets from $e^{+}e^{-}$ annihilations using the jet boost algorithm
title_full Experimental studies of unbiased gluon jets from $e^{+}e^{-}$ annihilations using the jet boost algorithm
title_fullStr Experimental studies of unbiased gluon jets from $e^{+}e^{-}$ annihilations using the jet boost algorithm
title_full_unstemmed Experimental studies of unbiased gluon jets from $e^{+}e^{-}$ annihilations using the jet boost algorithm
title_short Experimental studies of unbiased gluon jets from $e^{+}e^{-}$ annihilations using the jet boost algorithm
title_sort experimental studies of unbiased gluon jets from $e^{+}e^{-}$ annihilations using the jet boost algorithm
topic Particle Physics - Experiment
url https://dx.doi.org/10.1103/PhysRevD.69.032002
http://cds.cern.ch/record/678203
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