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The European Spallation Source (ESS) in Lund, Sweden is just entering the construction phase with 3 neutron instruments having started in its design concept phase in 2014. As a collaboration of 17 European countries the majority of hardware…

The construction of the European Spallation Source (ESS) faces many challenges from the neutron beam transport point of view: The spallation source is specified as being driven by a 5 MW beam of protons, each with 2 GeV energy, and yet the…

Instrumentation and Detectors · Physics 2015-10-02 C. Zendler , D. Martin Rodriguez , P. M. Bentley

The European Spallation Source (ESS) in Lund, Sweden will become the world's leading neutron source for the study of materials. The instruments are being selected from conceptual proposals submitted by groups from around Europe. These…

The European Spallation Source ESS is being constructed in Lund, Sweden, to be the world's brightest cold pulsed spallation neutron source. The facility uses a 2GeV proton beam hitting a target to produce neutrons. The neutrons are then…

Instrumentation and Detectors · Physics 2022-09-26 V. Santoro , K. H Andersen , A. Khaplanov , R. Kolevatov , O. Gonzalez , F. Gruenauer , M. Magan , T. H. Randriamalala

Instrument backgrounds at neutron scattering facilities directly affect the quality and the efficiency of the scientific measurements that users perform. Part of the background at pulsed spallation neutron sources is caused by, and…

The European Spallation Source being constructed in Lund, Sweden will provide the user community with a neutron source of unprecedented brightness. By 2025, a suite of 15 instruments will be served by a high-brightness moderator system…

Instrumentation and Detectors · Physics 2020-02-11 V. Santoro , K. H. Andersen , D. D. DiJulio , E. B. Klinkby , T. M. Miller , D. Milstead , G. Muhrer , M. Stroble , A. Takibayev , L. Zanini , O. Zimmer

Building the European Spallation Source (ESS), the most powerful neutron source in the world, requires significant technological advances at most fronts of instrument component design. Detectors are not an exception. The existing…

The European Spallation Source (ESS), presently under construction in Lund, Sweden, is a multidisciplinary international laboratory that will operate the world's most powerful pulsed neutron source. Supported by a 3M Euro Research and…

European Spallation Source (ESS) will deliver neutrons at high flux for use in diverse neutron scattering techniques. The neutron source facility and the scientific instruments will be located in Lund, and the Data Management and Software…

The European Spallation Source (ESS) is the world's next generation spallation-based neutron source. The research conducted at ESS will yield in the discovery and development of new materials including the fields of manufacturing,…

Instrumentation and Detectors · Physics 2019-02-20 Gabor Galgoczi , Kalliopi Kanaki , Francesco Piscitelli , Thomas Kittelmann , Dezso Varga , Richard Hall-Wilton

The ambitious instrument suite for the future European Spallation Source whose civil construction started recently in Lund, Sweden, demands a set of diverse and challenging requirements for the neutron detectors. For instance, the…

Presently under construction in Lund, Sweden, the European Spallation Source (ESS) will be the world's brightest neutron source. As such, it has the potential for a particle physics program with a unique reach and which is complementary to…

Instrumentation and Detectors · Physics 2024-01-31 H. Abele , A. Alekou , A. Algora , K. Andersen , S. Baessler , L. Barron-Palos , J. Barrow , E. Baussan , P. Bentley , Z. Berezhiani , Y. Bessler , A. K. Bhattacharyya , A. Bianchi , J. Bijnens , C. Blanco , N. Blaskovic Kraljevic , M. Blennow , K. Bodek , M. Bogomilov , C. Bohm , B. Bolling , E. Bouquerel , G. Brooijmans , L. J. Broussard , O. Buchan , A. Burgman , H. Calen , C. J. Carlile , J. Cederkall , E. Chanel , P. Christiansen , V. Cirigliano , J. I. Collar , M. Collins , C. B. Crawford , E. Cristaldo Morales , P. Cupial , L. D'Alessi , J. I. M. Damian , H. Danared , D. Dancila , J. P. A. M. de Andre , J. P. Delahaye , S. Degenkolb , D. D. Di Julio , M. Dracos , K. Dunne , I. Efthymiopoulos , T. Ekelof , L. Eklund , M. Eshraqi , I. Esteban , G. Fanourakis , A. Farricker , E. Fernandez-Martinez , M. J. Ferreira , M. Fertl , P. Fierlinger , B. Folsom , A. Frank , A. Fratangelo , U. Friman-Gayer , T. Fukuda , H . O . U. Fynbo , A. Garcia Sosa , N. Gazis , B. Galnander , Th. Geralis , M. Ghosh , G. Gokbulut , J . J. Gomez-Cadenas , M. Gonzalez-Alonso , F. Gonzalez , L. Halic , C. Happe , P. Heil , A. Heinz , H. Herde , M. Holl , T. Jenke , M. Jenssen , E. Jericha , H. T. Johansson , R. Johansson , T. Johansson , Y. Kamyshkov , A. Kayis Topaksu , B. Kildetoft , K. Kirch , B. Klicek , E. Klinkby , R. Kolevatov , G. Konrad , M. Koziol , K. Krhac , A. Kupsc , L. Lacny , L. Larizgoitia , C. M. Lewis , M. Lindroos , E. Lychagin , E. Lytken , C. Maiano , P. Marciniewski , G. Markaj , B. Markisch , C. Marrelli , C. Martins , B. Meirose , M. Mezzetto , N. Milas , D. Milstead , F. Monrabal , G. Muhrer , A. Nepomuceno , V. Nesvizhevsky , T. Nilsson , P. Novella , M. Oglakci , T. Ohlsson , M. Olvegard , A. Oskarsson , T. Ota , J. Park , D. Patrzalek , H. Perrey , M. Persoz , G. Petkov , F. M. Piegsa , C. Pistillo , P. Poussot , P. Privitera , B. Rataj , D. Ries , N. Rizzi , S. Rosauro-Alcaraz , D. Rozpedzik , D. Saiang , V. Santoro , U. Schmidt , H. Schober , I. Schulthess , S. Silverstein , A. Simon , H. Sina , J. Snamina , W. M. Snow , T. Soldner , G. Stavropoulos , M. Stipcevic , B. Szybinski , A. Takibayev , Z. Tang , R. Tarkeshian , C. Theroine , J. Thorne , F. Terranova , J. Thomas , T. Tolba , P. Torres-Sanchez , E. Trachanas , R. Tsenov , U. I. Uggerhoj , G. Vankova-Kirilova , N. Vassilopoulos , R. Wagner , X. Wang , E. Wildner , M. Wolke , J. Wurtz , S. C. Yiu , S. G. Yoon , A. R. Young , L. Zanini , J. Zejma , D. Zerzion , O. Zimmer , O. Zormpa , Y. Zou

Fundamental neutron and neutrino physics at neutron sources, combining precision measurements and theory, can probe new physics at energy scales well beyond the highest energies probed by the LHC and possible future high energy collider…

Nuclear Experiment · Physics 2025-07-01 H. Abele , J. Amaral , W. R. Anthony , L. AAstrand , M. Atzori Corona , S. Baessler , M. Bartis , E. Baussan , D. H. Beck , J. Bijnens , K. Bodek , J. Bosina , E. Bossio , G. Brooijmans , L. J. Broussard , G. Brunetti , A. Burgman , M. Cadeddu , N. Cargioli , J. Cederkall , A. Chambon , T. W. Choi , P. Christiansen , V. Cianciolo , C. B. Crawford , S. Degenkolb , N. Delarosa , M. Demarteau , K. Dickerson , D. D. DiJulio , F. Dordei , Y. Efremenko , T. Ekelof , M. Eshraqi , R. R. Fan , M. Fertl , H. Filter-Pieler , B. Fornal , G. Fragneto , C. Gatto , P. Geltenbort , F. Ghazi Moradi , H. Gisbert , P. Golubev , M. Gonzalez-Alonso , G. Gorini , P. Heil , N. Hermansson-Truedsson , Y. Hicyilmaz , M. Holl , T. Ito , K. E. Iversen , T. Jenke , M. Jentschel , M. Juni Ferreira , S. Kawasaki , E. Kemp , P. Kinhult , M. Kitaguchi , J. Klenke , W. Korten , A. Kozela , B. Lauss , M. Lebert , W. Lee , T. Lesiak , C. Y. Liu , L. Lobell , A. Longhin , E. Lytken , B. Maerkisch , J. Marton , B. Meirose , N. Milas , D. Milstead , F. Monrabal , S. Moretti , P. Mueller , A. Nepomuceno , J. Newby , R. Nieuwenhuis , T. Palasz , R. Pasechnik , S. Penttila , M. Persoz , L. B. Persson , F. M. Piegsa , B. Plaster , I. Pradler , F. Pupilli , K. Pysz , T. Quirino , J. C. Ramsey , B. Rataj , J. Rathsman , S. Roccia , D. Rozpedzik , D. Rudolph , E. Salehi , V. Santoro , A. Saunders , H. Schober , K. Scholberg , W. Schreyer , A. Schubert , D. Silvermyr , O. Smirnova , W. M. Snow , T. Soldner , S. R. Soleti , Y. V. Stadnik , R. Strauss , F. Terranova , T. Tolba , N. Tsapatsaris , L. Vale Silva , W. Van Goethem , R. Wagner , M. Wolke , W. Yao , N. Yazdandoost , A. R. Young , L. Zanini , M. Zielinski

The European Spallation Source (ESS), currently finishing its construction, will soon provide the most intense neutron beams for multi-disciplinary science. At the same time, it will also produce a high-intensity neutrino flux with an…

High Energy Physics - Phenomenology · Physics 2021-05-12 Ivan Esteban

The European Spallation Source, currently under construction in Lund, Sweden, is a multidisciplinary international laboratory. Once completed to full specifications, it will operate the world's most powerful pulsed neutron source. Supported…

The European Spallation Source (ESS) will provide long neutron pulses for experiments on a suite of different instruments. Most of these will perform neutron data acquisition in event mode, i.e. each detected neutron will be characterised…

European Spallation Source will be the brightest neutron source in the world. It is being built in Lund, Sweden. Over 120 superconducting cavities will be installed in the facility, each regulated by an individual LLRF control system. To…

Accelerator Physics · Physics 2019-09-04 Maciej Grzegrzółka , Krzysztof Czuba , Mateusz Lipiński , Igor Rutkowski

The long (3ms) proton pulse of the European Spallation Source (ESS) gives rise to unique and potentially high backgrounds for the instrument suite. In such a source an instrument capabilities will be limited by it's Signal to Noise (S/N)…

Instrumentation and Detectors · Physics 2015-12-15 V. Santoro , X. X. Cai , D. D. DiJulio , S. Ansell , P. M. Bentley
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