English
Related papers

Related papers: Generic guide concepts for the European Spallation…

200 papers

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) is intended to become the most powerful spallation neutron source in the world and the flagship of neutron science in the upcoming decades. The exceptionally high neutron flux will provide unique…

Instrumentation and Detectors · Physics 2020-11-10 M. Klausz , K. Kanaki , T. Kittelmann , R. Toft-Petersen , J. O. Birk , M. A. Olsen , P. Zagyvai , R. J. Hall-Wilton

We study the potential of a set of future detectors, proposed to be located at the European Spallation Source (ESS), to probe neutrino millicharges through coherent elastic neutrino-nucleus scattering. In particular, we focus on detectors…

High Energy Physics - Phenomenology · Physics 2024-09-18 Alexander Parada , G. Sanchez Garcia

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…

We explore the potential of the European Spallation Source (ESS) in probing physics within and beyond the Standard Model (SM), based on future measurements of coherent elastic neutrino-nucleus scattering (CE$\nu$NS). We consider two SM…

High Energy Physics - Phenomenology · Physics 2025-05-13 Ayan Chattaraj , Anirban Majumdar , Dimitrios K. Papoulias , Rahul Srivastava

Many of the most interesting scientific subjects are also the hardest to study with neutrons. Metal-organic frameworks, organic superconductors, quantum magnets, pressure-tuned materials, are systems where the relevant signals are weak, the…

Instrumentation and Detectors · Physics 2026-04-14 E. Fogh , N. L. Amin , G. S. Tucker , M. Aouane , R. Georgii , J. Voigt , R. Toft-Petersen

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 upcoming European Spallation Source (ESS) will soon provide the most intense neutrino source in the world. We propose the Search for Hidden Neutrinos at the ESS (SHiNESS) experiment, highlighting its unique opportunities to search for…

High Energy Physics - Experiment · Physics 2025-05-28 Stefano Roberto Soleti , Pilar Coloma , Juan Jose Gómez Cadenas , Anatael Cabrera

We model the effect of ground movement, based on empirical experience, on the transport properties of long neutron guides by ray-tracing simulations. Our results reproduce the large losses found by an earlier study for a simple model, while…

Instrumentation and Detectors · Physics 2020-10-14 Asla Husgard , Martin A. Olsen , Rebekka Frøystad , Jonas P. Hyatt , Mads Bertelsen , Rasmus Toft-Petersen , Kim Lefmann

The European Spallation Source (ESS), currently under construction in Sweden, will provide an intense pulsed neutrino flux allowing for high-statistics measurements of coherent elastic neutrino-nucleus scattering (CE{\nu}NS) with advanced…

High Energy Physics - Phenomenology · Physics 2023-04-03 Sabya Sachi Chatterjee , Stéphane Lavignac , O. G. Miranda , G. Sanchez Garcia

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

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…

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…

The main objective of the European Spallation Source (ESS) is to perform consistently high impact neutron scattering science using the highest neutron flux of any facility in its class. This ambition is naturally accompanied by operational…

The CAMEA ESS neutron spectrometer is designed to achieve a high detection efficiency in the horizontal scattering plane, and to maximize the use of the long pulse European Spallation Source. It is an indirect geometry time-of-flight…

The European Spallation Source (ESS), presently well on its way to completion, will soon provide the most intense neutron beams for multi-disciplinary science. Fortuitously, it will also generate the largest pulsed neutrino flux suitable…

The ESS$\nu$SB project proposes to base a neutrino ''Super Beam'' of unprecedented luminosity at the European Spallation Source. The original proposal identified the second peak of the oscillation probability as the optimal to maximize the…

High Energy Physics - Phenomenology · Physics 2020-09-15 M. Blennow , E. Fernandez-Martinez , T. Ota , S. Rosauro-Alcaraz

Very intense neutrino beams and large neutrino detectors will be needed to enable the discovery of CP violation in the leptonic sector. The European Spallation Source (ESS), currently under construction in Lund, Sweden, is a research center…

A prototype quasi-parasitic thermal neutron beam monitor based on isotropic neutron scattering from a thin natural vanadium foil and standard $^3$He proportional counters is conceptualized, designed, simulated, calibrated, and commissioned.…