English
Related papers

Related papers: Physics at TESLA

200 papers

TESLA is designed as an electron-positron linear collider (LC) based on super-conducting technology. A second interaction region is forseen to be incorporated in the design allowing its possible operation as a photon collider. In this paper…

High Energy Physics - Experiment · Physics 2011-09-13 Aura Rosca

The Large Hadron Collider (LHC) at CERN will provide proton-proton collisions at a centre-of-mass energy of 14 TeV with a design luminosity of 10**34/cm**2/s. The exploitation of the rich physics potential offered by the LHC will be…

High Energy Physics - Experiment · Physics 2007-05-23 Felicitas Pauss , Michael Dittmar

The prospects for the discovery and exploration of low-energy Supersymmetry at future colliders, the Large Hadron Collider (LHC) and the future international linear electron positron collider (ILC) are summarized. The focus is on the…

High Energy Physics - Phenomenology · Physics 2007-05-23 Klaus Desch

The physics prospects of the high energy Photon Linear Collider are reviewed, emphasizing its potential to study the symmetry breaking sector, including Higgs searches and precision anomalous W couplings measurements.

High Energy Physics - Phenomenology · Physics 2007-05-23 G. Jikia

The status of the design of a detector for the TESLA collider is presented.

High Energy Physics - Experiment · Physics 2007-05-23 P. N. Burrows

Experiments on the Large Hadron Collider at CERN represent our furthest excursion yet along the energy frontier of particle physics. The goal of probing physical processes at the TeV energy scale puts strict requirements on the performance…

High Energy Physics - Experiment · Physics 2017-08-23 Jason Nielsen

The Compact Linear Collider (CLIC) is an option for a future e+e- collider operating at centre-of-mass energies up to 3 TeV, providing sensitivity to a wide range of new physics phenomena and precision physics measurements at the energy…

High Energy Physics - Experiment · Physics 2017-07-19 H. Abramowicz , A. Abusleme , K. Afanaciev , N. Alipour Tehrani , C. Balázs , Y. Benhammou , M. Benoit , B. Bilki , J. -J. Blaising , M. J. Boland , M. Boronat , O. Borysov , I. Božović-Jelisavčić , M. Buckland , S. Bugiel , P. N. Burrows , T. K. Charles , W. Daniluk , D. Dannheim , R. Dasgupta , M. Demarteau , M. A. Díaz Gutierrez , G. Eigen , K. Elsener , U. Felzmann , M. Firlej , E. Firu , T. Fiutowski , J. Fuster , M. Gabriel , F. Gaede , I. García , V. Ghenescu , J. Goldstein , S. Green , C. Grefe , M. Hauschild , C. Hawkes , D. Hynds , M. Idzik , G. Kačarević , J. Kalinowski , S. Kananov , W. Klempt , M. Kopec , M. Krawczyk , B. Krupa , M. Kucharczyk , S. Kulis , T. Laštovička , T. Lesiak , A. Levy , I. Levy , L. Linssen , S. Lukić , A. A. Maier , V. Makarenko , J. S. Marshall , V. J. Martin , K. Mei , G. Milutinović-Dumbelović , J. Moroń , A. Moszczyński , D. Moya , R. M. Münker , A. Münnich , A. T. Neagu , N. Nikiforou , K. Nikolopoulos , A. Nürnberg , M. Pandurović , B. Pawlik , E. Perez Codina , I. Peric , M. Petric , F. Pitters , S. G. Poss , T. Preda , D. Protopopescu , R. Rassool , S. Redford , J. Repond , A. Robson , P. Roloff , E. Ros , O. Rosenblat , A. Ruiz-Jimeno , A. Sailer , D. Schlatter , D. Schulte , N. Shumeiko , E. Sicking , F. Simon , R. Simoniello , P. Sopicki , S. Stapnes , R. Ström , J. Strube , K. P. Świentek , M. Szalay , M. Tesař , M. A. Thomson , J. Trenado , U. I. Uggerhøj , N. van der Kolk , E. van der Kraaij , M. Vicente Barreto Pinto , I. Vila , M. Vogel Gonzalez , M. Vos , J. Vossebeld , M. Watson , N. Watson , M. A. Weber , H. Weerts , J. D. Wells , L. Weuste , A. Winter , T. Wojtoń , L. Xia , B. Xu , A. F. Żarnecki , L. Zawiejski , I. -S. Zgura

After a brief review of the Big Issues in particle physics, we discuss the contributions to resolving that could be made by various planned and proposed future colliders. These include future runs of LEP and the Fermilab Tevatron collider,…

High Energy Physics - Phenomenology · Physics 2007-05-23 John Ellis

We discuss the capabilities of future muon colliders to resolve important particle physics questions. A collider with c.m. energy $\sqrt s = 100$ to 500~GeV offers the unique opportunity to produce Higgs bosons in the $s$-channel and…

High Energy Physics - Phenomenology · Physics 2009-09-15 V. Barger , M. S. Berger , J. F. Gunion , T. Han

I review recent developments in the theory and phenomenology of Higgs bosons at an $\epem$ linear collider with $\sqrt s$ of order 500 GeV.

High Energy Physics - Phenomenology · Physics 2007-05-23 J. F. Gunion

The prospect of an ep collider involving an LHC proton beam and a new electron accelerator is discussed. Configurations reaching centre of mass energies a factor of 5 beyond HERA are possible with luminosities of the order of 10^33 cm^-2…

High Energy Physics - Experiment · Physics 2015-05-13 Paul Newman

We summarize discovery potentials for the Standard Model Higgs boson produced in e^+e^- collisions and measurements of its detailed properties. Prospects for Higgs boson detection within the Minimal Supersymmetric Standard Model are also…

High Energy Physics - Phenomenology · Physics 2007-05-23 H. J. Schreiber

High energy photon colliders (gamma-gamma, gamma-electron) based on backward Compton scattering of laser light is a very natural addition to e+e- linear colliders. In this report we consider mainly this option for the TESLA project. Recent…

High Energy Physics - Experiment · Physics 2009-10-31 Valery Telnov

The Large Hadron Collider, a 7 + 7 TeV proton-proton collider under construction at CERN (the European Laboratory for Particle Physics in Geneva), will take experiments squarely into a new energy domain where mysteries of the electroweak…

High Energy Physics - Phenomenology · Physics 2008-11-26 Chris Quigg

A future linear collider such as TESLA may be able to run on the Z0 resonance with very high luminosity and polarised electron and positron beams. The possibilities of measuring electroweak quantities with high precision are investigated.…

High Energy Physics - Experiment · Physics 2011-03-23 Richard Hawkings , Klaus Moenig

The HERA electron--proton collider has collected 100 pb$^{-1}$ of data since its start-up in 1992, and recently moved into a high-luminosity operation mode, with upgraded detectors, aiming to increase the total integrated luminosity per…

High Energy Physics - Phenomenology · Physics 2007-05-23 S. Alekhin , G. Altarelli , N. Amapane , J. Andersen , V. Andreev , M. Arneodo , V. Avati , J. Baines , R. D. Ball , A. Banfi , S. P. Baranov , J. Bartels , O. Behnke , R. Bellan , J. Blumlein , H. Bottcher , S. Bolognesi , M. Boonekamp , D. Bourilkov , J. Bracinik , A. Bruni , G. Bruni , A. Buckley , A. Bunyatyan , C. M. Buttar , J. M. Butterworth , S. Butterworth , M. Cacciari , T. Carli , G. Cerminara , S. Chekanov , M. Ciafaloni , D. Colferai , J. Collins , A. Cooper-Sarkar , G. Corcella , M. Corradi , B. E. Cox , R. Croft , Z. Czyczula , A. Dainese , M. Dasgupta , G. Davatz , L. Del Debbio , Y. Delenda , A. De Roeck , M. Diehl , S. Diglio , G. Dissertori , M. Dittmar , J. Ellis , K. J. Eskola , T. O. Eynck , J. Feltesse , F. Ferro , R. D. Field , J. Forshaw , S. Forte , A. Geiser , S. Gieseke , A. Glazov , T. Gleisberg , P. Golonka , E. Gotsman , G. Grindhammer , M. Grothe , C. Group , M. Groys , A. Guffanti , G. Gustafson , C. Gwenlan , S. Hoche , C. Hogg , J. Huston , G. Iacobucci , G. Ingelman , S. Jadach , H. Jung , J. Kalliopuska , M. Kapishin , B. Kersevan , V. Khoze , M. Klasen , M. Klein , B. A. Kniehl , V. J. Kolhinen , H. Kowalski , G. Kramer , F. Krauss , S. Kretzer , K. Kutak , J. W. Lamsa , L. Lonnblad , T. Lastovicka , G. Lastovicka-Medin , E. Laenen , Th. Lagouri , J. I. Latorre , N. Lavesson , V. Lendermann , E. Levin , A. Levy , A. V. Lipatov , M. Lublinsky , L. Lytkin , T. Maki , L. Magnea , F. Maltoni , M. Mangano , U. Maor , C. Mariotti , N. Marola , A. D. Martin , A. Meyer , S. Moch , J. Monk , A. Moraes , A. Morsch , L. Motyka , E. Naftali , P. Newman , A. Nikitenko , F. Oljemark , R. Orava , M. Ottela , K. Osterberg , K. Peters , F. Petrucci , A. Piccione , A. Pilkington , K. Piotrzkowski , O. I. Piskounova , A. Proskuryakov , A. Prygarin , J. Pumplin , K. Rabbertz , R. Ranieri , V. Ravindran , B. Reisert , E. Richter-Was , L. Rinaldi , P. Robbe , E. Rodrigues , J. Rojo , H. Ruiz , M. Ruspa , M. G. Ryskin , A. Sabio Vera , G. P. Salam , A. Schalicke , S. Schatzel , T. Schorner-Sadenius , I. Schienbein , F-P. Schilling , S. Schumann , M. H. Seymour , F. Siegert , T. Sjostrand , M. Skrzypek , J. Smith , M. Smizanska , H. Spiesberger , F. Schrempp , A. Stasto , H. Stenzel , W. J. Stirling , P. Szczypka , S. Tapprogge , C. Targett-Adams , M. Tasevsky , T. Teubner , R. S. Thorne , A. Tonazzo , A. Tricoli , N. Tuning , J. Turnau , U. Uwer , P. Van Mechelen , R. Venugopalan , M. Verducci , J. A. M. Vermaseren , A. Vogt , R. Vogt , B. F. L. Ward , Z. Was , G. Watt , B. M. Waugh , C. Weiser , M. R. Whalley , M. Wing , J. Winter , S. A. Yost , G. Zanderighi , N. P. Zotov

One item on the agenda of future colliders is certain to be the Higgs boson. What is it trying to tell us? The primary objective of any future collider must surely be to identify physics beyond the Standard Model, and supersymmetry is one…

High Energy Physics - Phenomenology · Physics 2016-12-21 John Ellis

Theoretical implications of the possible observation of a Higgs boson with a mass of about 115 GeV at LEP are discussed. Within the Standard Model a Higgs boson in this mass range agrees well with the indirect constraints from electroweak…

High Energy Physics - Phenomenology · Physics 2007-05-23 G. Weiglein

Measuring the Gamma(h -> gamma gamma)Br(h -> bb) decay at the photon collider at TESLA is studied for a Standard Model Higgs boson of mass m_h = 120 GeV. The main background due to the process gamma gamma -> QQ(g), where Q = b,c, is…

High Energy Physics - Phenomenology · Physics 2007-05-23 P. Niezurawski , A. F. Zarnecki , M. Krawczyk

One year of Z- and WW-Threshold running of TESLA can provide the possibility to measure electroweak precision observables to an extremely high accuracy. At the Z peak O(10^9) Z bosons and about 6 10^8 b quarks can be collected. We employ…

High Energy Physics - Phenomenology · Physics 2007-05-23 S. Heinemeyer , Th. Mannel , G. Weiglein
‹ Prev 1 3 4 5 6 7 10 Next ›