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The Dark MAtter Particle Explorer (DAMPE) instrument is a space-borne cosmic-ray detector, capable of measuring ion fluxes up to $\sim$500 TeV/n. This energy scale is made accessible through its calorimeter, which is the deepest currently…

We study the physics reach of the long-baseline oscillation analysis of the DUNE experiment when realistic simulations are used to estimate its neutrino energy reconstruction capabilities. Our studies indicate that significant improvements…

High Energy Physics - Phenomenology · Physics 2016-10-12 Valentina De Romeri , Enrique Fernandez-Martinez , Michel Sorel

We investigate novel strategies to extend the sensitivity of dark matter direct detection experiments to energy deposits well below the thresholds of conventional detectors. In liquid-argon time-projection chambers equipped with silicon…

Instrumentation and Detectors · Physics 2026-01-12 Faeq Abed , Asmaa AlMellah , Kareem Al-Jubouri , Alex Lumoski

Chromatic calorimetry introduces a novel approach to calorimeter design in High Energy Physics (HEP) by integrating Quantum Dot (QD) technology into traditional homogeneous calorimeters. The tunable emission spectra of QDs provide new…

Instrumentation and Detectors · Physics 2025-07-23 Yacine Haddad , Devanshi Arora , Etiennette Auffray , Michael Doser , Matteo Salomoni , Michele Weber

The DUNE/LBNF program aims to address key questions in neutrino physics and astroparticle physics. Realizing DUNE's potential to reconstruct low-energy particles in the 10-100 MeV energy range will bring significant benefits for all DUNE's…

Liquid argon time projection chambers have emerged as a competitive technology for detecting solar neutrinos. The SoLAr collaboration was formed to explore argon detectors with pixelated light and charge readout, aiming for high detection…

The Deep Underground Neutrino Experiment (DUNE) is a next generation long baseline (1300 km) neutrino oscillation experiment. The neutrino beam measurements will be performed by a near detector (ND) and far detector (FD). The far detector…

Instrumentation and Detectors · Physics 2023-03-01 H. V. Souza

In nuclear, particle and astroparticle physics experiments, calorimeters are used to measure the properties of particles with kinetic energies that range from a fraction of 1 eV to 10^20 eV or more. These properties are not necessarily…

Instrumentation and Detectors · Physics 2018-10-17 Richard Wigmans

After the landmark discovery of non-zero $\theta_{13}$ by the modern reactor experiments, unprecedented precision on neutrino mass-mixing parameters has been achieved over the past decade. This has set the stage for the discovery of…

High Energy Physics - Phenomenology · Physics 2023-08-15 Sanjib Kumar Agarwalla , Sudipta Das , Alessio Giarnetti , Davide Meloni , Masoom Singh

The Deep Underground Neutrino Experiment (DUNE) is a leading-edge experiment designed to perform neutrino science and proton decay searches. In particular, the far detector will consist of four 10-kton Liquid Argon (LAr) Time Projection…

Instrumentation and Detectors · Physics 2020-08-26 Chiara Lastoria

The dual phase Liquid Argon Time Projection Chamber (LAr TPC) is the state-of-art technology for neutrino detection thanks to its superb 3D tracking and calorimetry performance. Its main feature is the charge amplification in gas argon…

Instrumentation and Detectors · Physics 2019-08-14 Sebastien Murphy

In this white paper, we outline some of the scientific opportunities and challenges related to detection and reconstruction of low-energy (less than 100 MeV) signatures in liquid argon time-projection chamber (LArTPC) detectors. Key…

Instrumentation and Detectors · Physics 2022-03-07 D. Caratelli , W. Foreman , A. Friedland , S. Gardiner , I. Gil-Botella , G. Karagiorgi , M. Kirby , G. Lehmann Miotto , B. R. Littlejohn , M. Mooney , J. Reichenbacher , A. Sousa , K. Scholberg , J. Yu , T. Yang , S. Andringa , J. Asaadi , T. J. C. Bezerra , F. Capozzi , F. Cavanna , E. Church , A. Himmel , T. Junk , J. Klein , I. Lepetic , S. Li , P. Sala , H. Schellman , M. Sorel , J. Wang , M. H. L. S. Wang , W. Wu , J. Zennamo , M. A. Acero , M. R. Adames , H. Amar , D. A. Andrade , C. Andreopoulos , A. M. Ankowski , M. A. Arroyave , V. Aushev , M. A. Ayala-Torres , P. Baldi , C. Backhouse , A. B. Balantekin , W. A. Barkhouse , P. Barham Alzas , J. L. Barrow , J. B. R. Battat , M. C. Q. Bazetto , J. F. Beacom , B. Behera , G. Bellettini , J. Berger , A. T. Bezerra , J. Bian , B. Bilki , B. Bles , T. Bolton , L. Bomben , M. Bonesini , C. Bonilla-Diaz , F. Boran , A. N. Borkum , N. Bostan , D. Brailsford , A. Branca , G. Brunetti , T. Cai , A. Chappell , N. Charitonidis , P. H. P. Cintra , E. Conley , T. E. Coan , P. Cova , L. M. Cremaldi , J. I. Crespo-Anadon , C. Cuesta , R. Dallavalle , G. S. Davies , S. De , P. Dedin Neto , M. Delgado , N. Delmonte , P. B. Denton , A. De Roeck , R. Dharmapalan , Z. Djurcic , F. Dolek , S. Doran , R. Dorrill , K. E. Duffy , B. Dutta , O. Dvornikov , S. Edayath , J. J. Evans , A. C. Ezeribe , A. Falcone , M. Fani , J. Felix , Y. Feng , L. Fields , P. Filip , G. Fiorillo , D. Franco , D. Garcia-Gamez , A. Giri , O. Gogota , S. Gollapinni , M. Goodman , E. Gramellini , R. Gran , P. Granger , C. Grant , S. E. Greenberg , M. Groh , R. Guenette , D. Guffanti , D. A. Harris , A. Hatzikoutelis , K. M. Heeger , M. Hernandez Morquecho , K. Herner , J. Ho , P C. Holanda , N. Ilic , C. M. Jackson , W. Jang , H. -Th. Janka , J. H. Jo , F. R. Joaquim , R. S. Jones , N. Jovancevic , Y. -J. Jwa , D. Kalra , D. M. Kaplan , I. Katsioulas , E. Kearns , K. J. Kelly , E. Kemp , W. Ketchum , A. Kish , L. W. Koerner , T. Kosc , K. Kothekar , I. Kreslo , S. Kubota , V. A. Kudryavtsev , P. Kumar , T. Kutter , J. Kvasnicka , I. Lazanu , T. LeCompte , Y. Li , Y. Liu , M. Lokajicek , W. C. Louis , K. B. Luk , X. Luo , P. A. N. Machado , I. M. Machulin , K. Mahn , M. Man , R. C. Mandujano , J. Maneira , A. Marchionni , D. Marfatia , F. Marinho , C. Mariani , C. M. Marshall , F. Martinez Lopez , D. A. Martinez Caicedo , A. Mastbaum , M. Matheny , N. McConkey , P. Mehta , O. E. B. Messer , A. Minotti , O. G. Miranda , P. Mishra , I. Mocioiu , A. Mogan , R. Mohanta , T. Mohayai , C. Montanari , L. M. Montano Zetina , A. F. Moor , D. Moretti , C. A. Moura , L. M. Mualem , J. Nachtman , S. Narita , A. Navrer-Agasson , M. Nebot-Guinot , J. Nikolov , J. A. Nowak , J. P. Ochoa-Ricoux , E. O'Connor , Y. Onel , Y. Onishchuk , G. D. Orebi Gann , V. Pandey , E. G. Parozzi , S. Parveen , M. Parvu , R. B. Patterson , L. Paulucci , V. Pec , S. J. M. Peeters , F. Pompa , N. Poonthottathil , S. S. Poudel , F. Psihas , A. Rafique , B. J. Ramson , J. S. Real , A. Rikalo , M. Ross-Lonergan , B. Russell , S. Sacerdoti , N. Sahu , D. A. Sanders , D. Santoro , M. V. Santos , C. R. Senise , P. N. Shanahan , H. R Sharma , R. K. Sharma , W. Shi , S. Shin , J. Singh , J. Singh , L. Singh , P. Singh , V. Singh , M. Soderberg , S. Soldner-Rembold , J. Soto-Oton , K. Spurgeon , A. F. Steklain , F. Stocker , T. Stokes , J. Strait , M. Strait , T. Strauss , L. Suter , R. Svoboda , A. M. Szelc , M. Szydagis , E. Tarpara , E. Tatar , F. Terranova , G. Testera , N. Chithirasree , N. Todorovic , A. Tonazzo , M. Torti , F. Tortorici , M. Toups , D. Q. Tran , M. Travar , Y. -D. Tsai , Y. -T. Tsai , S. Z. Tu , J. Urheim , H. Utaegbulam , S. Valder , G. A. Valdiviesso , R. Valentim , S. Vergani , B. Viren , A. Vranicar , B. Wang , D. Waters , P. Weatherly , M. Weber , H. Wei , S. Westerdale , L. H. Whitehead , D. Whittington , A. Wilkinson , R. J. Wilson , M. Worcester , K. Wresilo , B. Yaeggy , G. Yang , J. Zalesak , B. Zamorano , J. Zuklin

The Deep Underground Neutrino Experiment (DUNE) is a next-generation long-baseline neutrino experiment. In addition to GeV-scale oscillation measurements ($\delta_{CP}$, $\theta_{23}$ octant, mass ordering), DUNE features a low-energy…

High Energy Physics - Experiment · Physics 2025-05-26 Emile Lavaut

The Deep Underground Neutrino Experiment (DUNE) is a 40-kton underground liquid argon time-projection-chamber (LAr TPC) detector, for long-baseline neutrino oscillation studies and for neutrino astrophysics and nucleon decay searches.…

Instrumentation and Detectors · Physics 2018-01-17 C. Cuesta

The search for relativistic scattering signals of cosmogenic light dark matter at terrestrial detectors has received increasing attention as an alternative approach to probe dark-sector physics. Large-volume neutrino experiments are well…

High Energy Physics - Phenomenology · Physics 2021-02-02 Albert De Roeck , Doojin Kim , Zahra Gh. Moghaddam , Jong-Chul Park , Seodong Shin , Leigh H. Whitehead

The Argon Dark Matter (ArDM-1t) experiment is a ton-scale liquid argon (LAr) double-phase time projection chamber designed for direct Dark Matter searches. Such a device allows to explore the low energy frontier in LAr with a charge imaging…

CPT symmetry, the combination of Charge Conjugation, Parity and Time reversal, is a cornerstone of our model building strategy and therefore the repercussions of its potential violation will severely threaten the most extended tool we…

High Energy Physics - Phenomenology · Physics 2018-04-06 Gabriela Barenboim , Christoph Andreas Ternes , Mariam Tórtola

In this paper we present the updated physics sensitivity of DUNE in presence of a light sterile neutrino with both far and near detectors. In the previous studies, the sensitivities were obtained using the configuration of DUNE as described…

High Energy Physics - Phenomenology · Physics 2022-01-05 Monojit Ghosh , Rukmani Mohanta

One of the far detectors of the Deep Underground Neutrino Experiment (DUNE) will be instrumented with a Vertical Drift Liquid Argon Time Projection Chamber (VD LArTPC). It will also be equipped with a Photo-Detection System (PDS), which…

High Energy Physics - Experiment · Physics 2024-12-16 Sabrina Sacerdoti

This study introduces chromatic calorimetry, a novel particle detection method that uses strategically layered scintillators with different emission wavelengths. This approach aims to enhance energy measurement by capturing particle…

Instrumentation and Detectors · Physics 2025-01-16 Devanshi Arora , Matteo Salomoni , Yacine Haddad , Vojtech Zabloudil , Michael Doser , Masaki Owari , Etiennette Auffray