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The BM@N experiment (Baryonic Matter at the Nuclotron) is the first fixed-target experiment at the JINR NICA accelerator complex. In this work, data on the interactions of a carbon-ion beam with kinetic energies of 4.0A~GeV and 4.5A~GeV…

High Energy Physics - Experiment · Physics 2026-04-21 S. Afanasiev , G. Agakishiev , A. Aleksandrov , E. Aleksandrov , I. Aleksandrov , P. Alekseev , K. Alishina , V. Astakhov , T. Aushev , V. Azorskiy , V. Babkin , N. Balashov , R. Barak , A. Baranov , D. Baranov , N. Baranova , N. Barbashina , S. Bazylev , M. Belov , D. Blau , V. Bocharnikov , G. Bogdanova , E. Bondar , E. Boos , E. Bozorov , M. Buryakov , S. Buzin , A. Chebotov , D. Chemezov , J. H. Chen , A. Demanov , D. Dementev , A. Dmitriev , J. Drnoyan , D. Dryablov , B. Dubinchik , P. Dulov , A. Egorov , D. Egorov , V. Elsha , A. Eviev , A. Fediunin , A. Fedosimova , I. Filippov , I. Filozova , D. Finogeev , I. Gabdrakhmanov , O. Gavrischuk , K. Gertsenberger , S. Gertsenberger , O. Golosov , V. Golovatyuk , P. Grigoriev , M. Golubeva , F. Guber , S. Ibraimova , D. Idrisov , T. Idrissova , A. Iusupova , A. Ivashkin , A. Izvestnyy , V. Kabadzhov , A. Kakhorova , Sh. Kanokova , M. Kapishin , V. Karjavin , D. Karmanov , N. Karpushkin , R. Kattabekov , V. Kekelidze , S. Khabarov , P. Kharlamov , G. Khudaiberdyev , Yu. Kiryushin , P. Klimai , V. Kolesnikov , A. Kolozhvari , V. Kondratiev , Yu. Kopylov , M. Korolev , L. Kovachev , I. Kovalev , I. Kruglova , V. Kozlov , S. Kuklin , E. Kulish , A. Kurganov , V. Kutergina , A. Kuznetsov , E. Ladygin , D. Lanskoy , N. Lashmanov , I. Lebedev , V. Lenivenko , R. Lednicky , V. Leontiev , E. Litvinenko , D. Lyapin , Y. G. Ma , A. Makankin , A. Makhnev , A. Malakhov , M. Mamaev , A. Martemianov , M. Merkin , S. Merts , S. Morozov , Yu. Murin , K. Musaev , G. Musulmanbekov , D. Myktybekov , R. Nagdasev , S. Nemnyugin , D. Nikitin , R. Nizamov , S. Novozhilov , A. Olimov , Kh. Olimov , K. Olimov , I. Osokin , V. Palichik , P. Parfenov , I. Pelevanyuk , D. Peresunko , S. Piyadin , M. Platonova , V. Plotnikov , D. Podgainy , I. Polev , I. Pshenichnov , N. Pukhaeva , F. Ratnikov , S. Reshetova , V. Rogov , I. Romanov , I. Rufanov , P. Rukoyatkin , M. Rumyantsev , T. Rybakov , D. Sakulin , S. Sedykh , S. Savenkov , D. Serebryakov , A. Shabanov , S. Sergeev , A. Serikkanov , A. Sheremetev , A. Sheremeteva , A. Shchipunov , M. Shitenkov , M. Shodmonov , M. Shopova , A. Shutov , V. Shutov , I. Slepnev , V. Slepnev , I. Slepov , A. Smirnov , A. Solomin , A. Sorin , V. Spaskov , A. Stavinskiy , V. Stekhanov , Yu. Stepanenko , E. Streletskaya , O. Streltsova , M. Strikhanov , E. Sukhov , D. Suvarieva , A. Svetlichnyi , G. Taer , A. Taranenko , N. Tarasov , O. Tarasov , P. Teremkov , A. Terletsky , O. Teryaev , V. Tcholakov , V. Tikhomirov , A. Timoshenko , O. Tojiboev , N. Topilin , T. Tretyakova , V. Troshin , A. Truttse , I. Tserruya , V. Tskhay , I. Tyapkin , V. Ustinov , V. Vasendina , V. Velichkov , K. Vitanov , N. Vitanov , V. Volkov , A. Voronin , A. Voronin , N. Voytishin , B. Yuldashev , V. Yurevich , N. Zamiatin , M. Zavertyaev , S. Zhang , I. Zhavoronkova , V. Zhezher , N. Zhigareva , I. Zhironkin , A. Zinchenko , R. Zinchenko , A. Zubankov , E. Zubarev , M. Zuev

Collisions of heavy ions (nuclei) at ultra-relativistic energies (sqrt(s_NN) >> 10 GeV per nucleon-nucleon collision in the centre of mass system) are regarded as a unique tool to produce in the laboratory a high energy density and high…

High Energy Physics - Phenomenology · Physics 2010-12-21 A. Dainese

The CERN FCC-ee top-up booster synchrotron will accelerate electrons and positrons from an injection energy of 20 GeV up to an extraction energy between 45.6 GeV and 182.5 GeV depending on the operation mode. These accelerated beams will be…

Accelerator Physics · Physics 2020-03-24 D. Quartullo , M. Migliorati , M. Zobov

The completion of the PIP-II project and its superconducting linear accelerator will provide up to 1.2 MW of beam power to the LBNF/DUNE facility for neutrino physics. It will also be able to produce high-power beams directly from the linac…

A superintense laser pulse illuminating a thin solid-density foil can, in principle, accelerate the entire foil, therefore yielding dense, collimated, and quasi-monoenergetic ion beams. These unique features render radiation pressure…

Plasma Physics · Physics 2020-02-27 Maitreyi Sangal , Matteo Tamburini

The term beta-beam has been coined for the production of a pure beam of electron neutrinos or their antiparticles through the decay of radioactive ions circulating in a storage ring. This concept requires radioactive ions to be accelerated…

Design studies, for accelerator modules based on an injector cyclotron and a superconducting ring cyclotron able to accelerate H$_2^+$ molecules, are presented. H$_2^+$ molecules are stripped by a foil creating a proton beam, with a maximum…

Accelerator Physics · Physics 2019-08-13 A. Adelmann

Some of the most sensitive and precise measurements to date are based on matterwave interferometry with freely falling atomic clouds. Examples include high-precision measurements of inertia, gravity and rotation. In order to achieve these…

The in-plane motion of an electron on helium can couple to superconducting microwave resonators via electrical dipole coupling, offering a robust and rapid readout scheme. In previous efforts, microwave resonator designs for electrons on…

Here we report a systematic investigation on the evolution of the structural and physical properties, including the charge density wave and superconductivity of the polycrystalline CuIr2Te4-xIx. X-ray diffraction results indicate that both…

The RAON, a superconducting linear accelerator for RISP (Rare Isotope Science Project), will use a charge stripper in order to increase the charge states of the heavy ions for effective acceleration in the higher energy part of the linac.…

Accelerator Physics · Physics 2016-11-03 Ji-Ho Jang , Hyunchang Jin , Jeong Seog Song

The higher efficiency of superconducting radio-frequency (SRF) cavities compared to normal-conducting ones enables the development of high-energy continuous-wave linear accelerators (linacs). Recent progress in the development of…

The Electron-Ion Collider (EIC) is a next-generation accelerator primarily designed to study the internal structure of nucleons through high-precision electron-hadron collisions. In this work, we explore the feasibility of employing a 1 MW…

High Energy Physics - Phenomenology · Physics 2026-03-06 Nishat Fiza , Mehedi Masud , Kim Siyeon , Guang Yang

The Drive Beam Linac of the Compact Linear Collider (CLIC) has to accelerate an electron beam with 4.2 A up to 2.4 GeV in almost fully-loaded structures. The pulse contains about 70000 bunches, one in every second rf bucket, and has a…

Accelerator Physics · Physics 2012-02-28 Avni Aksoy

The proposed High-Energy LHC project presents an unusual combination of strong synchrotron radiation (SR) damping and intrabeam scattering (IBS), which is not seen in present-day hadron colliders. The subject of investigation reported in…

Accelerator Physics · Physics 2011-08-09 A. Valishev

Structures and parameters of some high and low temperature superconductors (HTSC, LTSC) are considered basing on the alternative estimate of the O2- ion radius magnitude (0.5-0.6) A. Phase transitions into the superconducting state are…

Superconductivity · Physics 2007-05-23 V. N. Bogomolov

We present a Circular Energy Recovery Collider (CERC) as an alternative approach for a high-energy high-luminosity electron-positron collider to current designs for high-energy electron-positron colliders either based on two storage rings…

Accelerator Physics · Physics 2022-03-24 Vladimir N Litvinenko , Nikhil Bachhawat , Maria Chamizo-Llatas , Francois Meot , Thomas Roser

To assess the degree of equilibration of the matter created in heavy-ion reactions at low to intermediate beam energies, a hadronic transport approach (SMASH) is employed. By using a coarse-graining method, we compute the energy momentum…

High Energy Physics - Phenomenology · Physics 2022-09-12 Gabriele Inghirami , Hannah Elfner

Conventional particle accelerators use linear focusing forces for transverse confinement. As a consequence of linearity, accelerating rings are sensitive to myriad resonances and instabilities. At high beam intensity, uncontrolled…

Accelerator Physics · Physics 2018-08-31 Kiersten Ruisard

With the recent implementation of a radio-frequency quadrupole (RFQ) cooler-buncher and a multi-step laser resonance ionization technique, our previously developed collinear laser spectroscopy setup has been successfully upgraded into a…

Instrumentation and Detectors · Physics 2025-05-22 H. R. Hu , Y. F. Guo , X. F. Yang , Z. Yan , W. C. Mei , S. J. Chen , Y. S. Liu , P. Zhang , S. W. Bai , D. Y. Chen , Y. C. Liu , S. J. Wang , Q. T. Li , Y. L. Ye , C. Y. He , J. Yang , Z. Y. Liu