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Titolo:
ENERGY-FLOW IN THE HADRONIC FINAL-STATE OF DIFFRACTIVE AND NON-DIFFRACTIVE DEEP-INELASTIC SCATTERING AT HERA
Autore:
AID S; ANDREEV V; ANDRIEU B; APPUHN RD; ARPAGAUS M; BABAEV A; BAHR J; BAN J; BAN Y; BARANOV P; BARRELET E; BARSCHKE R; BARTEL W; BARTH M; BASSLER U; BECK HP; BEHREND HJ; BELOUSOV A; BERGER C; BERNARDI G; BERNET R; BERTRANDCOREMANS G; BESANCON M; BEYER R; BIDDULPH P; BISPHAM P; BIZOT JC; BLOBEL V; BORRAS K; BOTTERWECK F; BOUDRY V; BRAEMER A; BRAUNSCHWEIG W; BRISSON V; BRUNCKO D; BRUNE C; BUCHHOLZ R; BUNGENER L; BURGER J; BUSSER FW; BUNIATIAN A; BURKE S; BURTON MJ; BUSCHHORN G; CAMPBELL AJ; CARLI T; CHARLES F; CHARLET M; CLARKE D; CLEGG AB; CLERBAUX B; COCKS S; CONTRERAS JG; CORMACK C; COUGHLAN JA; COURAU A; COUSINOU MC; COUTURES C; COZZIKA G; CRIEGEE L; CUSSANS DG; CVACH J; DAGORET S; DAINTON JB; DAU WD; DAUM K; DAVID M; DAVIS CL; DELCOURT B; DEROECK A; DEWOLF EA; DIRKMANN M; DIXON P; DINEZZA P; DLUGOSZ W; DOLLFUS C; DOWELL JD; DREIS HB; DROUTSKOI A; DULLMANN D; DUNGER O; DUHM H; EBERT J; EBERT TR; ECKERLIN G; EFREMENKO V; EGLI S; EICHLER R; EISELE F; EISENHANDLER E; ELLISON RJ; ELSEN E; ERDMANN M; ERDMANN W; EVRARD E; FAHR AB; FAVART L; FEDOTOV A; FEEKEN D; FELST R; FELTESSE J; FERENCEI J; FERRAROTTO F; FLAMM K; FLEISCHER M; FLIESER M; FLUGGE G; FOMENKO A; FOMINYKH B; FORBUSH M; FORMANEK J; FOSTER JM; FRANKE G; FRETWURST E; GABATHULER E; GABATHULER K; GAEDE F; GARVEY J; GAYLER J; GEBAUER M; GELLRICH A; GENZEL H; GERHARDS R; GLAZOV A; GOERLACH U; GOERLICH L; GOGITIDZE N; GOLDBERG M; GOLDNER D; GOLECBIERNAT K; GONZALEZPINEIRO B; GORELOV I; GRAB C; GRASSLER H; GRASSLER R; GREENSHAW T; GRIFFITHS R; GRINDHAMMER G; GRUBER A; GRUBER C; HAACK J; HAIDT D; HAJDUK L; HAMPEL M; HAYNES WJ; HEINZELMANN G; HENDERSON RCW; HENSCHEL H; HERYNEK I; HESS MF; HILDESHEIM W; HILLER KH; HILTON CD; HLADKY J; HOEGER KC; HOPPNER M; HOFFMANN D; HOLTOM T; HORISBERGER R; HUDGSON VL; HUTTE M; HUFNAGEL H; IBBOTSON M; ITTERBECK H; JABIOL MA; JACHOLKOWSKA A; JACOBSSON C; JAFFRE M; JANOTH J; JANSEN T; JONSSON L; JOHANNSEN K; JOHNSON DP; JOHNSON L; JUNG H; KALMUS PIP; KANDER M; KANT D; KASCHOWITZ R; KATHAGE U; KATZY J; KAUFMANN HH; KAUFMANN O; KAZARIAN S; KENYON IR; KERMICHE S; KEUKER C; KIESLING C; KLEIN M; KLEINWORT C; KNIES G; KO W; KOHLER T; KOHNE JH; KOLANOSKI H; KOLE F; KOLYA SD; KORBEL V; KORN M; KOSTKA P; KOTELNIKOV SK; KRAMERKAMPER T; KRASNY MW; KREHBIEL H; KRUCKER D; KRUGER U; KRUNERMARQUIS U; KUSTER H; KUHLEN M; KURCA T; KURZHOFER J; LACOUR D; LAFORGE B; LAMARCHE F; LANDER R; LANDON MPJ; LANGE W; LANGENEGGER U; LAPORTE JF; LEBEDEV A; LEHNER F; LEVERENZ C; LEVONIAN S; LEY C; LINDSTROM G; LINDSTROEM M; LINK J; LINSEL F; LIPINSKI J; LIST B; LOBO G; LOCH P; LOHMANDER H; LOMAS JW; LOPEZ GC; LUBIMOV V; LUKE D; MAGNUSSEN N; MALINOVSKI E; MANI S; MARACEK R; MARAGE P; MARKS J; MARSHALL R; MARTENS J; MARTIN G; MARTIN R; MARTYN HU; MARTYNIAK J; MASSON S; MAVROIDIS T; MAXFIELD SJ; MCMAHON SJ; MEHTA A; MEIER K; MERZ T; MEYER A; MEYER A; MEYER H; MEYER J; MEYER PO; MIGLIORI A; MIKOCKI S; MILSTEAD D; MOECK J; MOREAU F; MORRIS JV; MROCZKO E; MULLER D; MULLER G; MULLER K; MURIN P; NAGOVIZIN V; NAHNHAUER R; NAROSKA B; NAUMANN T; NEWMAN PR; NEWTON D; NEYRET D; NGUYEN HK; NICHOLLS TC; NIEBERGALL F; NIEBUHR C; NIEDZBALLA C; NIGGLI H; NISIUS R; NOWAK G; NOYES GW; NYBERGWERTHER M; OAKDEN M; OBERLACK H; OBROCK U; OLSSON JE; OZEROV D; PALMEN P; PANARO E; PANITCH A; PASCAUD C; PATEL GD; PAWLETTA H; PEPPEL E; PEREZ E; PHILLIPS JP; PIEUCHOT A; PITZL D; POPE G; PRELL S; PROSI R; RABBERTZ K; RADEL G; RAUPACH F; REIMER P; REINSHAGEN S; RICK H; RIECH V; RIEDLBERGER J; RIEPENHAUSEN F; RIESS S; RIETZ M; RIZVI E; ROBERTSON SM; ROBMANN P; ROLOFF HE; ROOSEN R; ROSENBAUER K; ROSTOVTSEV A; ROUSE F; ROYON C; RUTER K; RUSAKOV S; RYBICKI K; SAHLMANN N; SANKEY DPC; SCHACHT P; SCHIEK S; SCHLEIF S; SCHLEPER P; VONSCHLIPPE W; SCHMIDT D; SCHMIDT G; SCHONING A; SCHRODER V; SCHUHMANN E; SCHWAB B; SEFKOW F; SEIDEL M; SELL R; SEMENOV A; SHEKELYAN V; SHEVIAKOV I; SHTARKOV LN; SIEGMON G; SIEWERT U; SIROIS Y; SKILLICORN IO; SMIRNOV P; SMITH JR; SOLOCHENKO V; SOLOVIEV Y; SPECKA A; SPIEKERMANN J; SPIELMAN S; SPITZER H; SQUINABOL F; STAROSTA R; STEENBOCK M; STEFFEN P; STEINBERG R; STEINER H; STELLA B; STIER J; STIEWE J; STOSSLEIN U; STOLZE K; STRAUMANN U; STRUCZINSKI W; SUTTON JP; TAPPROGGE S; TASEVSKY M; TCHERNYSHOV V; TCHETCHELNITSKI S; THEISSEN J; THIEBAUX C; THOMPSON G; TRUOL P; TURNAU J; TUTAS J; UELKES P; USIK A; VALKAR S; VALKAROVA A; VALLEE C; VANDENPLAS D; VANESCH P; VANMECHELEN P; VAZDIK Y; VERRECCHIA P; VILLET G; WACKER K; WAGENER A; WAGENER M; WALTHER A; WAUGH B; WEBER G; WEBER M; WEGENER D; WEGNER A; WENGLER T; WERNER M; WEST LR; WILKSEN T; WILLARD S; WINDE M; WINTER GG; WITTEK C; WUNSCH E; ZACEK J; ZARBOCK D; ZHANG Z; ZHOKIN A; ZIMMER M; ZOMER F; ZSEMBERY J; ZUBER K; ZURNEDDEN M;
Indirizzi:
UNIV HAMBURG,INST EXPTL PHYS 2 W-2000 HAMBURG GERMANY RHEIN WESTFAL TH AACHEN,INST PHYS 1 W-5100 AACHEN GERMANY HUMBOLDT UNIV BERLIN,INST PHYS BERLIN GERMANY UNIV BIRMINGHAM,SCH PHYS & SPACE RES BIRMINGHAM B15 2TT W MIDLANDS ENGLAND VUB,ULB,INTER UNIV INST HIGH ENERGIES BRUSSELS BELGIUM UNIV INSTELLING ANTWERP B-2610 WILRIJK BELGIUM RUTHERFORD APPLETON LAB DIDCOT OX11 0QX OXON ENGLAND INST PHYS NUCL KRAKOW POLAND UNIV CALIF DAVIS,DEPT PHYS DAVIS CA 95616 UNIV CALIF DAVIS,IIRPA DAVIS CA 95616 UNIV DORTMUND,INST PHYS W-4600 DORTMUND GERMANY CENS,CEA,DSM,DAPNIA F-91191 GIF SUR YVETTE FRANCE UNIV GLASGOW,DEPT PHYS & ASTRON GLASGOW LANARK SCOTLAND DESY W-2000 HAMBURG GERMANY UNIV HAMBURG,INST EXPTL PHYS 1 HAMBURG GERMANY UNIV HEIDELBERG,INST PHYS W-6900 HEIDELBERG GERMANY UNIV HEIDELBERG,INST HOCHENERGIEPHYS W-6900 HEIDELBERG GERMANY CHRISTIAN ALBRECHTS UNIV KIEL,INST REINE & ANGEW KERNPHYS W-2300 KIELGERMANY SLOVAK ACAD SCI,INST EXPTL PHYS KOSICE 04353 SLOVAKIA UNIV LANCASTER,SCH PHYS & CHEM LANCASTER ENGLAND UNIV LIVERPOOL,DEPT PHYS LIVERPOOL L69 3BX MERSEYSIDE ENGLAND UNIV LONDON QUEEN MARY & WESTFIELD COLL LONDON E1 4NS ENGLAND LUND UNIV,DEPT PHYS LUND SWEDEN UNIV MANCHESTER,DEPT PHYS MANCHESTER M13 9PL LANCS ENGLAND UNIV AIX MARSEILLE 2,CPPM,CNRS,IN2P3 MARSEILLE FRANCE INST THEORET & EXPTL PHYS MOSCOW 117259 RUSSIA PN LEBEDEV PHYS INST MOSCOW 117924 RUSSIA MAX PLANCK INST PHYS & ASTROPHYS MUNICH GERMANY UNIV PARIS 11,LAL,CNRS,IN2P3 ORSAY FRANCE ECOLE POLYTECH,LPNHE,CNRS,IN2P3 PALAISEAU FRANCE UNIV PARIS 06,LPNHE PARIS FRANCE UNIV PARIS 07,CNRS,IN2P3 PARIS FRANCE ACAD SCI CZECH REPUBL,INST PHYS PRAGUE CZECH REPUBLIC CHARLES UNIV,NUCL CTR PRAGUE CZECH REPUBLIC UNIV ROMA LA SAPIENZA,DIPARTIMENTO FIS I-00185 ROME ITALY IST NAZL FIS NUCL ROME ITALY PAUL SCHERRER INST VILLIGEN SWITZERLAND BERG UNIV GESAMTHSCH WUPPERTAL,FACHBEREICH PHYS W-5600 WUPPERTAL GERMANY DESY,INST HOCHENERGIEPHYS ZEUTHEN GERMANY ETH ZURICH,INST TEILCHENPHYS ZURICH SWITZERLAND UNIV ZURICH,INST PHYS ZURICH SWITZERLAND
Titolo Testata:
Zeitschrift fur Physik. C, Particles and fields
fascicolo: 4, volume: 70, anno: 1996,
pagine: 609 - 620
SICI:
0170-9739(1996)70:4<609:EITHFO>2.0.ZU;2-6
Fonte:
ISI
Lingua:
ENG
Soggetto:
EP SCATTERING; CASCADES; QCD;
Tipo documento:
Article
Natura:
Periodico
Settore Disciplinare:
Science Citation Index Expanded
Citazioni:
39
Recensione:
Indirizzi per estratti:
Citazione:
S. Aid et al., "ENERGY-FLOW IN THE HADRONIC FINAL-STATE OF DIFFRACTIVE AND NON-DIFFRACTIVE DEEP-INELASTIC SCATTERING AT HERA", Zeitschrift fur Physik. C, Particles and fields, 70(4), 1996, pp. 609-620

Abstract

An investigation of the hadronic final state in diffractive and non-diffractive deep-inelastic electron-proton scattering at HERA is presented, where diffractive data are selected experimentally by demanding alarge gap in pseudo-rapidity around the proton remnant direction. Thetransverse energy flow in the hadronic final state is evaluated usinga set of estimators which quantify topological properties. Using available Monte Carlo QCD calculations, it is demonstrated that the final state in diffractive DIS exhibits the features expected if the interaction is interpreted as the scattering of an electron off a current quark with associated effects of perturbative QCD. A model in which deep-inelastic diffraction is taken to be the exchange of a pomeron with partonic structure is found to reproduce the measurements well. Models for deep-inelastic ep scattering, in which a sizeable diffractive contribution is present because of non-perturbative effects in the production of the hadronic final state, reproduce the general tendencies of the data but in all give a worse description.

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Documento generato il 30/11/20 alle ore 09:29:02