The inclusive semileptonic branching ratios b --> e nu X, mu nu X, tau nu X and nu X have been measured at LEP with the L3 detector. The analysis is based on 2-jet hadronic Z decays obtained in the data collected between 1991 and 1992. Three separate event samples are analysed, containing electrons, muons and large missing energy (neutrinos), respectively. From the electron sample, we measure Br(b --> e nu X) = (10.89+/-0.20+/-0.51)% and, from the muon sample, Br(b --> mu nu X) = (10.82+/-0.15+/-0.59)%, where the first error is statistical and the second is systematic. From the missing energy sample, we measure Br(b --> nu X) = (23.08+/-0.77+/-1.24)%, assuming the relative semileptonic decay rates e:mu:tau = 1:1:(0.25+/-0.05), according to theoretical expectations. From a combined analysis of all three samples and constraining the relative semileptonic rates, we measure Br(b --> e nu X) = Br(b --> mu nu X) = (10.68+/-0.11+/-0.46)%. Alternatively, we can remove the constraint on the relative semileptonic rates and measure Br(b --> tau nu X) = (1.7+/-0.5+/-1.1)%.
Measurement of the branching ratios b -> e nu Chi, mu nu Chi, tau nu Chi, and nu Chi / Acciarri, M; Adam, A; Adriani, O; Aguilarbenitez, M; Ahlen, S; Alpat, B; Alcaraz, J; Alemanni, G; Allaby, J; Aloisio, A; Alverson, G; Alviggi, Mg; Ambrosi, G; Anderhub, H; Andreev, Vp; Angelescu, T; Antreasyan, D; Arefiev, A; Azemoon, T; Aziz, T; Bagnaia, Paolo; Baksay, L; Ball, Rc; Banerjee, S; Banicz, K; Barillere, R; Barone, Luciano Maria; Bartalini, P; Baschirotto, A; Basile, M; Battiston, R; Bay, A; Becattini, F; Becker, U; Behner, F; Berdugo, J; Berges, P; Bertucci, B; Betev, Bl; Biasini, M; Biland, A; Bilei, Gm; Blaising, Jj; Blyth, Sc; Bobbink, Gj; Bock, R; Bohm, A; Borgia, B; Boucham, A; Bourilkov, D; Bourquin, M; Boutigny, D; Brambilla, E; Branson, Jg; Brigljevic, V; Brock, Ic; Buijs, A; Bujak, A; Burger, Jd; Burger, Wj; Busenitz, J; Buytenhuijs, A; Cai, Xd; Campanelli, M; Capell, M; Romeo, Gc; Caria, M; Carlino, G; Cartacci, Am; Casaus, J; Castellini, G; Castello, R; Cavallari, F; Cavallo, N; Cecchi, C; Cerrada, M; Cesaroni, F; Chamizo, M; Chan, A; Chang, Yh; Chaturvedi, Uk; Chemarin, M; Chen, A; Chen, G; Chen, Gm; Chen, Hf; Chen, Hs; Chen, M; Chiefari, G; Chien, Cy; Choi, Mt; Cifarelli, L; Cindolo, F; Civinini, C; Clare, I; Clare, R; Cohn, Ho; Coignet, G; Colijn, Ap; Colino, N; Costantini, S; Cotorobai, F; Delacruz, B; Csilling, A; Dai, Ts; Dalessandro, R; Deasmundis, R; Deboeck, H; Degre, A; Deiters, K; Denes, P; Denotaristefani, F; Dibitonto, D; Diemoz, M; Vandierendonck, D; Dilodovico, F; Dionisi, C; Dittmar, M; Dominguez, A; Doria, A; Dorne, I; Dova, Mt; Drago, E; Duchesneau, D; Duinker, P; Duran, I; Dutta, S; Easo, S; Efremenko, Y; Elmamouni, H; Engler, A; Eppling, Fj; Erne, Fc; Ernenwein, Jp; Extermann, P; Fabre, M; Faccini, R; Falciano, S; Favara, A; Fay, J; Felcini, M; Furetta, C; Ferguson, T; Fernandez, D; Ferroni, Fernando; Fesefeldt, H; Fiandrini, E; Field, Jh; Filthaut, F; Fisher, Ph; Forconi, G; Fredj, L; Freudenreich, K; Galaktionov, Y; Ganguli, Sn; Gau, Ss; Gentile, Simonetta; Gerald, J; Gheordanescu, N; Giagu, Stefano; Goldfarb, S; Goldstein, J; Gong, Zf; Gougas, A; Gratta, G; Gruenewald, Mw; Gupta, Vk; Gurtu, A; Gutay, Lj; Hangarter, K; Hartmann, B; Hasan, A; Hebbeker, T; Herve, A; Vanhoek, Wc; Hofer, H; Hoorani, H; Hou, Sr; Hu, G; Ilyas, Mm; Innocente, V; Janssen, H; Jin, Bn; Jones, Lw; Dejong, P; Josamutuberria, I; Kasser, A; Khan, Ra; Kamyshkov, Y; Kapinos, P; Kapustinsky, Js; Karyotakis, Y; Kaur, M; Kienzlefocacci, Mn; Kim, D; Kim, Jk; Kim, Sc; Kim, Yg; Kinnison, Ww; Kirkby, A; Kirkby, D; Kirkby, J; Kiss, D; Kittel, W; Klimentov, A; Konig, Ac; Korolko, I; Koutsenko, V; Koulbardis, A; Kraemer, Rw; Kramer, T; Krenz, W; Kuijten, H; Kunin, A; Deguevara, Pl; Landi, G; Lapoint, C; Lassilaperini, K; Laurikainen, P; Lebeau, M; Lebedev, A; Lebrun, P; Lecomte, P; Lecoq, P; Lecoultre, P; Lee, Js; Lee, Ky; Leggett, C; Legoff, Jm; Leiste, R; Lenti, M; Leonardi, E; Levtchenko, P; Li, C; Lieb, E; Lin, Wt; Linde, Fl; Lista, L; Liu, Za; Lohmann, W; Longo, E; Lu, W; Lu, Ys; Lubelsmeyer, K; Luci, Claudio; Luckey, D; Ludovici, L; Luminari, L; Lustermann, W; Ma, Wg; Macchiolo, A; Maity, M; Majumder, G; Malgeri, L; Malinin, A; Mana, C; Mangla, S; Marchesini, P; Marin, A; Martin, Jp; Marzano, F; Massaro, Ggg; Mazumdar, K; Mcnally, D; Mele, S; Merola, L; Meschini, M; Metzger, Wj; Vondermey, M; Mi, Y; Mihul, A; Vanmil, Ajw; Mirabelli, G; Mnich, J; Monteleoni, B; Moore, R; Morganti, S; Mount, R; Muller, S; Muheim, F; Nagy, E; Nahn, S; Napolitano, M; Nessitedaldi, F; Newman, H; Nippe, A; Nowak, H; Organtini, G; Ostonen, R; Pandoulas, D; Paoletti, S; Paolucci, P; Park, Hk; Pascale, G; Passaleva, C; Patricelli, S; Paul, T; Pauluzzi, M; Pauss, C; Pauss, F; Peach, D; Pei, Yj; Pensotti, S; Perretgallix, D; Petrak, S; Pevsner, A; Piccolo, D; Pieri, M; Pinto, Jc; Piroue, Pa; Pistolesi, E; Plyaskin, V; Pohl, M; Pojidaev, V; Postema, H; Produit, N; Raghavan, R; Rahalcallot, G; Rancoita, Pg; Rattaggi, M; Raven, G; Razis, P; Read, K; Ren, D; Rescigno, M; Reucroft, S; Vanrhee, T; Riemann, S; Riemers, Bc; Riles, K; Rind, O; Ro, S; Robohm, A; Rodin, J; Rodriguez, Fj; Roe, Bp; Rohner, S; Romero, L; Rosierlees, S; Rosselet, P; Vanrossum, W; Roth, S; Rubio, Ja; Rykaczewski, H; Salicio, J; Sanchez, E; Santocchia, A; Sarakinos, Me; Sarkar, S; Sassowsky, M; Sauvage, G; Schneegans, M; Schoeneich, B; Scholz, N; Schopper, H; Schotanus, Dj; Schwenke, J; Schwering, G; Sciacca, C; Sciarrino, D; Sens, Jc; Servoli, L; Shevchenko, S; Shivarov, N; Shoutko, V; Shukla, J; Shumilov, E; Siedenburg, T; Son, D; Sopczak, A; Soulimov, V; Smith, B; Spillantini, P; Steuer, M; Stickland, Dp; Sticozzi, F; Stone, H; Stoyanov, B; Straessner, A; Strauch, K; Sudhakar, K; Sultanov, G; Sun, Lz; Susinno, Gf; Suter, H; Swain, Jd; Tang, Xw; Tauscher, L; Taylor, L; Ting, Scc; Ting, Sm; Tonisch, F; Tonutti, M; Tonwar, Sc; Toth, J; Tsaregorodtsev, A; Tully, C; Tuchscherer, H; Tung, Kl; Ulbricht, J; Uwer, U; Valente, E; Vandewalle, Rt; Vesztergombi, G; Vetlitsky, I; Viertel, G; Vivargent, M; Volkert, R; Vogel, H; Vogt, H; Vorobiev, I; Vorobyov, Aa; Vorobyov, Aa; Vorvolakos, A; Wadhwa, M; Wallraff, W; Wang, Jc; Wang, Xl; Wang, Yf; Wang, Zm; Weber, A; Wittgenstein, F; Wu, Sx; Wynhoff, S; Xu, J; Xu, Zz; Yang, Bz; Yang, Cg; Yao, Xy; Ye, Jb; Yeh, Sc; You, Jm; Zaccardelli, C; Zalite, A; Zemp, P; Zeng, Y; Zhang, Z; Zhang, Zp; Zhou, B; Zhou, Y; Zhu, Gy; Zhu, Ry; Zichichi, A.. - In: ZEITSCHRIFT FÜR PHYSIK. C, PARTICLES AND FIELDS. - ISSN 0170-9739. - 71:(1996), pp. 379-389. [10.1007/s002880050184]
Measurement of the branching ratios b -> e nu Chi, mu nu Chi, tau nu Chi, and nu Chi
ACCIARRI M; ADAM A; ADRIANI O; AGUILARBENITEZ M; AHLEN S; ALPAT B; ALCARAZ J; ALEMANNI G; ALLABY J; ALOISIO A; ALVERSON G; ALVIGGI MG; AMBROSI G; ANDERHUB H; ANDREEV VP; ANGELESCU T; ANTREASYAN D; AREFIEV A; AZEMOON T; AZIZ T; BAGNAIA, Paolo ;BAKSAY L; BALL RC; BANERJEE S; BANICZ K; BARILLERE R; BARONE, Luciano Maria ;BARTALINI P; BASCHIROTTO A; BASILE M; BATTISTON R; BAY A; BECATTINI F; BECKER U; BEHNER F; BERDUGO J; BERGES P; BERTUCCI B; BETEV BL; BIASINI M; BILAND A; BILEI GM; BLAISING JJ; BLYTH SC; BOBBINK GJ; BOCK R; BOHM A; BORGIA B; BOUCHAM A; BOURILKOV D; BOURQUIN M; BOUTIGNY D; BRAMBILLA E; BRANSON JG; BRIGLJEVIC V; BROCK IC; BUIJS A; BUJAK A; BURGER JD; BURGER WJ; BUSENITZ J; BUYTENHUIJS A; CAI XD; CAMPANELLI M; CAPELL M; ROMEO GC; CARIA M; CARLINO G; CARTACCI AM; CASAUS J; CASTELLINI G; CASTELLO R; CAVALLARI F; CAVALLO N; CECCHI C; CERRADA M; CESARONI F; CHAMIZO M; CHAN A; CHANG YH; CHATURVEDI UK; CHEMARIN M; CHEN A; CHEN G; CHEN GM; CHEN HF; CHEN HS; CHEN M; CHIEFARI G; CHIEN CY; CHOI MT; CIFARELLI L; CINDOLO F; CIVININI C; CLARE I; CLARE R; COHN HO; COIGNET G; COLIJN AP; COLINO N; COSTANTINI S; COTOROBAI F; DELACRUZ B; CSILLING A; DAI TS; DALESSANDRO R; DEASMUNDIS R; DEBOECK H; DEGRE A; DEITERS K; DENES P; DENOTARISTEFANI F; DIBITONTO D; DIEMOZ M; VANDIERENDONCK D; DILODOVICO F; DIONISI C; DITTMAR M; DOMINGUEZ A; DORIA A; DORNE I; DOVA MT; DRAGO E; DUCHESNEAU D; DUINKER P; DURAN I; DUTTA S; EASO S; EFREMENKO Y; ELMAMOUNI H; ENGLER A; EPPLING FJ; ERNE FC; ERNENWEIN JP; EXTERMANN P; FABRE M; FACCINI R; FALCIANO S; FAVARA A; FAY J; FELCINI M; FURETTA C; FERGUSON T; FERNANDEZ D; FERRONI, Fernando ;FESEFELDT H; FIANDRINI E; FIELD JH; FILTHAUT F; FISHER PH; FORCONI G; FREDJ L; FREUDENREICH K; GALAKTIONOV Y; GANGULI SN; GAU SS; GENTILE, Simonetta ;GERALD J; GHEORDANESCU N; GIAGU, Stefano ;GOLDFARB S; GOLDSTEIN J; GONG ZF; GOUGAS A; GRATTA G; GRUENEWALD MW; GUPTA VK; GURTU A; GUTAY LJ; HANGARTER K; HARTMANN B; HASAN A; HEBBEKER T; HERVE A; VANHOEK WC; HOFER H; HOORANI H; HOU SR; HU G; ILYAS MM; INNOCENTE V; JANSSEN H; JIN BN; JONES LW; DEJONG P; JOSAMUTUBERRIA I; KASSER A; KHAN RA; KAMYSHKOV Y; KAPINOS P; KAPUSTINSKY JS; KARYOTAKIS Y; KAUR M; KIENZLEFOCACCI MN; KIM D; KIM JK; KIM SC; KIM YG; KINNISON WW; KIRKBY A; KIRKBY D; KIRKBY J; KISS D; KITTEL W; KLIMENTOV A; KONIG AC; KOROLKO I; KOUTSENKO V; KOULBARDIS A; KRAEMER RW; KRAMER T; KRENZ W; KUIJTEN H; KUNIN A; DEGUEVARA PL; LANDI G; LAPOINT C; LASSILAPERINI K; LAURIKAINEN P; LEBEAU M; LEBEDEV A; LEBRUN P; LECOMTE P; LECOQ P; LECOULTRE P; LEE JS; LEE KY; LEGGETT C; LEGOFF JM; LEISTE R; LENTI M; LEONARDI E; LEVTCHENKO P; LI C; LIEB E; LIN WT; LINDE FL; LISTA L; LIU ZA; LOHMANN W; LONGO E; LU W; LU YS; LUBELSMEYER K; LUCI, Claudio ;LUCKEY D; LUDOVICI L; LUMINARI L; LUSTERMANN W; MA WG; MACCHIOLO A; MAITY M; MAJUMDER G; MALGERI L; MALININ A; MANA C; MANGLA S; MARCHESINI P; MARIN A; MARTIN JP; MARZANO F; MASSARO GGG; MAZUMDAR K; MCNALLY D; MELE S; MEROLA L; MESCHINI M; METZGER WJ; VONDERMEY M; MI Y; MIHUL A; VANMIL AJW; MIRABELLI G; MNICH J; MONTELEONI B; MOORE R; MORGANTI S; MOUNT R; MULLER S; MUHEIM F; NAGY E; NAHN S; NAPOLITANO M; NESSITEDALDI F; NEWMAN H; NIPPE A; NOWAK H; ORGANTINI G ;OSTONEN R; PANDOULAS D; PAOLETTI S; PAOLUCCI P; PARK HK; PASCALE G; PASSALEVA C; PATRICELLI S; PAUL T; PAULUZZI M; PAUSS C; PAUSS F; PEACH D; PEI YJ; PENSOTTI S; PERRETGALLIX D; PETRAK S; PEVSNER A; PICCOLO D; PIERI M; PINTO JC; PIROUE PA; PISTOLESI E; PLYASKIN V; POHL M; POJIDAEV V; POSTEMA H; PRODUIT N; RAGHAVAN R; RAHALCALLOT G; RANCOITA PG; RATTAGGI M; RAVEN G; RAZIS P; READ K; REN D; RESCIGNO M; REUCROFT S; VANRHEE T; RIEMANN S; RIEMERS BC; RILES K; RIND O; RO S; ROBOHM A; RODIN J; RODRIGUEZ FJ; ROE BP; ROHNER S; ROMERO L; ROSIERLEES S; ROSSELET P; VANROSSUM W; ROTH S; RUBIO JA; RYKACZEWSKI H; SALICIO J; SANCHEZ E; SANTOCCHIA A; SARAKINOS ME; SARKAR S; SASSOWSKY M; SAUVAGE G; SCHNEEGANS M; SCHOENEICH B; SCHOLZ N; SCHOPPER H; SCHOTANUS DJ; SCHWENKE J; SCHWERING G; SCIACCA C; SCIARRINO D; SENS JC; SERVOLI L; SHEVCHENKO S; SHIVAROV N; SHOUTKO V; SHUKLA J; SHUMILOV E; SIEDENBURG T; SON D; SOPCZAK A; SOULIMOV V; SMITH B; SPILLANTINI P; STEUER M; STICKLAND DP; STICOZZI F; STONE H; STOYANOV B; STRAESSNER A; STRAUCH K; SUDHAKAR K; SULTANOV G; SUN LZ; SUSINNO GF; SUTER H; SWAIN JD; TANG XW; TAUSCHER L; TAYLOR L; TING SCC; TING SM; TONISCH F; TONUTTI M; TONWAR SC; TOTH J; TSAREGORODTSEV A; TULLY C; TUCHSCHERER H; TUNG KL; ULBRICHT J; UWER U; VALENTE E; VANDEWALLE RT; VESZTERGOMBI G; VETLITSKY I; VIERTEL G; VIVARGENT M; VOLKERT R; VOGEL H; VOGT H; VOROBIEV I; VOROBYOV AA; VOROBYOV AA; VORVOLAKOS A; WADHWA M; WALLRAFF W; WANG JC; WANG XL; WANG YF; WANG ZM; WEBER A; WITTGENSTEIN F; WU SX; WYNHOFF S; XU J; XU ZZ; YANG BZ; YANG CG; YAO XY; YE JB; YEH SC; YOU JM; ZACCARDELLI C; ZALITE A; ZEMP P; ZENG Y; ZHANG Z; ZHANG ZP; ZHOU B; ZHOU Y; ZHU GY; ZHU RY; ZICHICHI A.
1996
Abstract
The inclusive semileptonic branching ratios b --> e nu X, mu nu X, tau nu X and nu X have been measured at LEP with the L3 detector. The analysis is based on 2-jet hadronic Z decays obtained in the data collected between 1991 and 1992. Three separate event samples are analysed, containing electrons, muons and large missing energy (neutrinos), respectively. From the electron sample, we measure Br(b --> e nu X) = (10.89+/-0.20+/-0.51)% and, from the muon sample, Br(b --> mu nu X) = (10.82+/-0.15+/-0.59)%, where the first error is statistical and the second is systematic. From the missing energy sample, we measure Br(b --> nu X) = (23.08+/-0.77+/-1.24)%, assuming the relative semileptonic decay rates e:mu:tau = 1:1:(0.25+/-0.05), according to theoretical expectations. From a combined analysis of all three samples and constraining the relative semileptonic rates, we measure Br(b --> e nu X) = Br(b --> mu nu X) = (10.68+/-0.11+/-0.46)%. Alternatively, we can remove the constraint on the relative semileptonic rates and measure Br(b --> tau nu X) = (1.7+/-0.5+/-1.1)%.
Citazione
Measurement of the branching ratios b -> e nu Chi, mu nu Chi, tau nu Chi, and nu Chi / Acciarri, M; Adam, A; Adriani, O; Aguilarbenitez, M; Ahlen, S; Alpat, B; Alcaraz, J; Alemanni, G; Allaby, J; Aloisio, A; Alverson, G; Alviggi, Mg; Ambrosi, G; Anderhub, H; Andreev, Vp; Angelescu, T; Antreasyan, D; Arefiev, A; Azemoon, T; Aziz, T; Bagnaia, Paolo; Baksay, L; Ball, Rc; Banerjee, S; Banicz, K; Barillere, R; Barone, Luciano Maria; Bartalini, P; Baschirotto, A; Basile, M; Battiston, R; Bay, A; Becattini, F; Becker, U; Behner, F; Berdugo, J; Berges, P; Bertucci, B; Betev, Bl; Biasini, M; Biland, A; Bilei, Gm; Blaising, Jj; Blyth, Sc; Bobbink, Gj; Bock, R; Bohm, A; Borgia, B; Boucham, A; Bourilkov, D; Bourquin, M; Boutigny, D; Brambilla, E; Branson, Jg; Brigljevic, V; Brock, Ic; Buijs, A; Bujak, A; Burger, Jd; Burger, Wj; Busenitz, J; Buytenhuijs, A; Cai, Xd; Campanelli, M; Capell, M; Romeo, Gc; Caria, M; Carlino, G; Cartacci, Am; Casaus, J; Castellini, G; Castello, R; Cavallari, F; Cavallo, N; Cecchi, C; Cerrada, M; Cesaroni, F; Chamizo, M; Chan, A; Chang, Yh; Chaturvedi, Uk; Chemarin, M; Chen, A; Chen, G; Chen, Gm; Chen, Hf; Chen, Hs; Chen, M; Chiefari, G; Chien, Cy; Choi, Mt; Cifarelli, L; Cindolo, F; Civinini, C; Clare, I; Clare, R; Cohn, Ho; Coignet, G; Colijn, Ap; Colino, N; Costantini, S; Cotorobai, F; Delacruz, B; Csilling, A; Dai, Ts; Dalessandro, R; Deasmundis, R; Deboeck, H; Degre, A; Deiters, K; Denes, P; Denotaristefani, F; Dibitonto, D; Diemoz, M; Vandierendonck, D; Dilodovico, F; Dionisi, C; Dittmar, M; Dominguez, A; Doria, A; Dorne, I; Dova, Mt; Drago, E; Duchesneau, D; Duinker, P; Duran, I; Dutta, S; Easo, S; Efremenko, Y; Elmamouni, H; Engler, A; Eppling, Fj; Erne, Fc; Ernenwein, Jp; Extermann, P; Fabre, M; Faccini, R; Falciano, S; Favara, A; Fay, J; Felcini, M; Furetta, C; Ferguson, T; Fernandez, D; Ferroni, Fernando; Fesefeldt, H; Fiandrini, E; Field, Jh; Filthaut, F; Fisher, Ph; Forconi, G; Fredj, L; Freudenreich, K; Galaktionov, Y; Ganguli, Sn; Gau, Ss; Gentile, Simonetta; Gerald, J; Gheordanescu, N; Giagu, Stefano; Goldfarb, S; Goldstein, J; Gong, Zf; Gougas, A; Gratta, G; Gruenewald, Mw; Gupta, Vk; Gurtu, A; Gutay, Lj; Hangarter, K; Hartmann, B; Hasan, A; Hebbeker, T; Herve, A; Vanhoek, Wc; Hofer, H; Hoorani, H; Hou, Sr; Hu, G; Ilyas, Mm; Innocente, V; Janssen, H; Jin, Bn; Jones, Lw; Dejong, P; Josamutuberria, I; Kasser, A; Khan, Ra; Kamyshkov, Y; Kapinos, P; Kapustinsky, Js; Karyotakis, Y; Kaur, M; Kienzlefocacci, Mn; Kim, D; Kim, Jk; Kim, Sc; Kim, Yg; Kinnison, Ww; Kirkby, A; Kirkby, D; Kirkby, J; Kiss, D; Kittel, W; Klimentov, A; Konig, Ac; Korolko, I; Koutsenko, V; Koulbardis, A; Kraemer, Rw; Kramer, T; Krenz, W; Kuijten, H; Kunin, A; Deguevara, Pl; Landi, G; Lapoint, C; Lassilaperini, K; Laurikainen, P; Lebeau, M; Lebedev, A; Lebrun, P; Lecomte, P; Lecoq, P; Lecoultre, P; Lee, Js; Lee, Ky; Leggett, C; Legoff, Jm; Leiste, R; Lenti, M; Leonardi, E; Levtchenko, P; Li, C; Lieb, E; Lin, Wt; Linde, Fl; Lista, L; Liu, Za; Lohmann, W; Longo, E; Lu, W; Lu, Ys; Lubelsmeyer, K; Luci, Claudio; Luckey, D; Ludovici, L; Luminari, L; Lustermann, W; Ma, Wg; Macchiolo, A; Maity, M; Majumder, G; Malgeri, L; Malinin, A; Mana, C; Mangla, S; Marchesini, P; Marin, A; Martin, Jp; Marzano, F; Massaro, Ggg; Mazumdar, K; Mcnally, D; Mele, S; Merola, L; Meschini, M; Metzger, Wj; Vondermey, M; Mi, Y; Mihul, A; Vanmil, Ajw; Mirabelli, G; Mnich, J; Monteleoni, B; Moore, R; Morganti, S; Mount, R; Muller, S; Muheim, F; Nagy, E; Nahn, S; Napolitano, M; Nessitedaldi, F; Newman, H; Nippe, A; Nowak, H; Organtini, G; Ostonen, R; Pandoulas, D; Paoletti, S; Paolucci, P; Park, Hk; Pascale, G; Passaleva, C; Patricelli, S; Paul, T; Pauluzzi, M; Pauss, C; Pauss, F; Peach, D; Pei, Yj; Pensotti, S; Perretgallix, D; Petrak, S; Pevsner, A; Piccolo, D; Pieri, M; Pinto, Jc; Piroue, Pa; Pistolesi, E; Plyaskin, V; Pohl, M; Pojidaev, V; Postema, H; Produit, N; Raghavan, R; Rahalcallot, G; Rancoita, Pg; Rattaggi, M; Raven, G; Razis, P; Read, K; Ren, D; Rescigno, M; Reucroft, S; Vanrhee, T; Riemann, S; Riemers, Bc; Riles, K; Rind, O; Ro, S; Robohm, A; Rodin, J; Rodriguez, Fj; Roe, Bp; Rohner, S; Romero, L; Rosierlees, S; Rosselet, P; Vanrossum, W; Roth, S; Rubio, Ja; Rykaczewski, H; Salicio, J; Sanchez, E; Santocchia, A; Sarakinos, Me; Sarkar, S; Sassowsky, M; Sauvage, G; Schneegans, M; Schoeneich, B; Scholz, N; Schopper, H; Schotanus, Dj; Schwenke, J; Schwering, G; Sciacca, C; Sciarrino, D; Sens, Jc; Servoli, L; Shevchenko, S; Shivarov, N; Shoutko, V; Shukla, J; Shumilov, E; Siedenburg, T; Son, D; Sopczak, A; Soulimov, V; Smith, B; Spillantini, P; Steuer, M; Stickland, Dp; Sticozzi, F; Stone, H; Stoyanov, B; Straessner, A; Strauch, K; Sudhakar, K; Sultanov, G; Sun, Lz; Susinno, Gf; Suter, H; Swain, Jd; Tang, Xw; Tauscher, L; Taylor, L; Ting, Scc; Ting, Sm; Tonisch, F; Tonutti, M; Tonwar, Sc; Toth, J; Tsaregorodtsev, A; Tully, C; Tuchscherer, H; Tung, Kl; Ulbricht, J; Uwer, U; Valente, E; Vandewalle, Rt; Vesztergombi, G; Vetlitsky, I; Viertel, G; 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Il report seguente simula gli indicatori relativi alla propria produzione scientifica in relazione alle soglie ASN 2023-2025 del proprio SC/SSD. Si ricorda che il superamento dei valori soglia (almeno 2 su 3) è requisito necessario ma non sufficiente al conseguimento dell'abilitazione. La simulazione si basa sui dati IRIS e sugli indicatori bibliometrici alla data indicata e non tiene conto di eventuali periodi di congedo obbligatorio, che in sede di domanda ASN danno diritto a incrementi percentuali dei valori. La simulazione può differire dall'esito di un’eventuale domanda ASN sia per errori di catalogazione e/o dati mancanti in IRIS, sia per la variabilità dei dati bibliometrici nel tempo. Si consideri che Anvur calcola i valori degli indicatori all'ultima data utile per la presentazione delle domande. La presente simulazione è stata realizzata sulla base delle specifiche raccolte sul tavolo ER del Focus Group IRIS coordinato dall’Università di Modena e Reggio Emilia e delle regole riportate nel DM 589/2018 e allegata Tabella A. Cineca, l’Università di Modena e Reggio Emilia e il Focus Group IRIS non si assumono alcuna responsabilità in merito all’uso che il diretto interessato o terzi faranno della simulazione. Si specifica inoltre che la simulazione contiene calcoli effettuati con dati e algoritmi di pubblico dominio e deve quindi essere considerata come un mero ausilio al calcolo svolgibile manualmente o con strumenti equivalenti.