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The conventional approach for thermal quench mitigation in a tokamak disruption is through a high-Z impurity injection that radiates away the plasma's thermal energy before it reaches the wall. The downside is a robust Ohmic-to-runaway…

Plasma Physics · Physics 2025-10-15 Jason Hamilton , Luis Chacon , Giannis Keramidas , Xianzhu Tang

The Transatomic Power (TAP) reactor has an unusual design for a molten salt reactor technology, building upon the foundation laid by the Molten Salt Reactor Experiment (MSRE). This design introduces three key modifications to enhance…

Computational Engineering, Finance, and Science · Computer Science 2025-02-04 Muhammad Ramzy Altahhan , Lynn Munday , Yousry Azmy

The ion temperature behavior in the plasma core of the spherical tokamak Globus-M (major radius 0.36 m, minor radius 0.24 m, torus aspect ratio 1.5, toroidal magnetic field near the plasma axis 0.4 T, plasma current up to 0.3 MA) was…

A neutron detector based on EJ301 liquid scintillator has been employed at EAST to measure the neutron energy spectrum for D-D fusion plasma. The detector was carefully characterized in different quasi-monoenergetic neutron fields generated…

Instrumentation and Detectors · Physics 2013-04-30 Xi Yuan , Xing Zhang , Xufei Xie , G. Gorini , Zhongjing Chen , Xingyu Peng , Jinxiang Chen , Guohui Zhang , Tieshuan Fan , Guoqiang Zhong , Liqun Hu , Baonian Wan

First-principles simulations have been performed to investigate the phase stability of tantalum metal under high pressure and high temperature (HPHT). We searched its low-energy structures globally using our developed multi-algorithm…

Materials Science · Physics 2014-10-31 Zhong-Li Liu , Ling-Cang Cai , Xiu-Lu Zhang , Feng Xi

Ion acceleration in the MeV range can be routinely achieved with table-top laser technology. One of the current challenges is to improve the energy coupling from the laser to the proton beam without increasing the laser peak power.…

Plasma Physics · Physics 2019-02-18 Manuel Blanco , M. T. Flores-Arias , Marija Vranic

During disruptions in fusion-grade tokamaks like ITER, large electric fields are induced following the thermal quench (TQ) period which can generate a substantial amount of Runaway Electrons (REs) that can carry up to 10 MA current with…

Plasma Physics · Physics 2021-03-02 Ansh Patel , Santosh P. Pandya

The sustainment of steady-state plasmas in tokamaks requires efficient current drive systems. Lower Hybrid Current Drive (LHCD) is currently the most efficient method to generate a continuous additional off-axis toroidal plasma current as…

In [V.A. Izzo et al 2022 Nucl. Fusion 62 096029], state-of-the-art modeling of thermal and current quench (CQ) MHD coupled with a self-consistent evolution of runaway electron (RE) generation and transport showed that a non-axisymmetric (n…

The Beam Dump Facility (BDF) is a planned fixed-target installation in CERN's North Area, set to start operating in 2031. A proton beam of 400 GeV/c will be delivered in 1 s pulses of 4e13 protons every 7.2 s, amounting to 4e19 protons on…

The Compact Linear Collider (CLIC) is a proposed future high-luminosity linear electron-positron collider operating at three energy stages, with nominal centre-of-mass energies: 380 GeV, 1.5 TeV, and 3 TeV. Its aim is to explore the energy…

High Energy Physics - Experiment · Physics 2019-11-21 H. Abramowicz , N. Alipour Tehrani , D. Arominski , Y. Benhammou , M. Benoit , J. -J. Blaising , M. Boronat , O. Borysov , R. R. Bosley , I. Božović Jelisavčić , I. Boyko , S. Brass , E. Brondolin , P. Bruckman de Renstrom , M. Buckland , P. N. Burrows , M. Chefdeville , S. Chekanov , T. Coates , D. Dannheim , M. Demarteau , H. Denizli , G. Durieux , G. Eigen , K. Elsener , E. Fullana , J. Fuster , M. Gabriel , F. Gaede , I. García , J. Goldstein , P. Gomis Lopez , C. Graf , S. Green , C. Grefe , C. Grojean , A. Hoang , D. Hynds , A. Joffe , J. Kalinowski , G. Kačarević , W. Kilian , N. van der Kolk , M. Krawczyk , M. Kucharczyk , E. Leogrande , T. Lesiak , A. Levy , I. Levy , L. Linssen , A. A. Maier , V. Makarenko , J. S. Marshall , V. Martin , V. Mateu , O. Matsedonskyi , J. Metcalfe , G. Milutinović Dumbelović , R. M. Münker , Yu. Nefedov , K. Nowak , A. Nürnberg , M. Pandurović , M. Perelló , E. Perez Codina , M. Petric , F. Pitters , T. Price , T. Quast , S. Redford , J. Repond , A. Robson , P. Roloff , E. Ros , K. Rozwadowska , A. Ruiz-Jimeno , A. Sailer , F. Salvatore , U. Schnoor , D. Schulte , A. Senol , G. Shelkov , E. Sicking , F. Simon , R. Simoniello , P. Sopicki , S. Spannagel , S. Stapnes , R. Ström , M. Szalay , M. A. Thomson , B. Turbiarz , O. Viazlo , M. Vicente , I. Vila , M. Vos , J. Vossebeld , M. F. Watson , N. K. Watson , M. A. Weber , H. Weerts , J. D. Wells , A. Widl , M. Williams , A. G. Winter , T. Wojtoń , A. Wulzer , B. Xu , L. Xia , T. You , A. F. Żarnecki , L. Zawiejski , C. Zhang , J. Zhang , Y. Zhang , Z. Zhang , A. Zhemchugov

A disrupting plasma in a high-performance tokamak such as ITER or SPARC may generate large runaway electron currents that, upon impact with the tokamak wall, can cause serious damage to the device. To quickly identify regions of safe…

Plasma Physics · Physics 2026-03-24 Björn Zaar , István Pusztai , Ida Ekmark , Tünde Fülöp

Understanding generation and mitigation of runaway electrons in disruptions is important for the safe operation of future tokamaks. In this paper we investigate runaway dynamics in reactor-scale spherical tokamaks. We study both the…

Plasma Physics · Physics 2023-01-04 E. Berger , I. Pusztai , S. L. Newton , M. Hoppe , O. Vallhagen , A. Fil , T. Fülöp

Compact, reliable and little consuming accelerators are required for the treatment of tumours with ions. TERA proposes the "cyclinac", composed of a high-frequency, fast-cycling linac which boosts the energy of the particles previously…

Accelerator Physics · Physics 2012-06-18 U. Amaldi , D. Bergesio , R. Bonomi , A. Degiovanni , M. Garlasché , P. Magagnin , S. Verdú-Andrés , R. Wegner

We present an improved nuclear refrigerator reaching 0.3 mK, aimed at microkelvin nanoelectronic experiments, and use it to investigate metallic Coulomb blockade thermometers (CBTs) with various resistances R. The high-R devices cool to…

Mesoscale and Nanoscale Physics · Physics 2012-08-17 L. Casparis , M. Meschke , D. Maradan , A. C. Clark , C. Scheller , K. K. Schwarzwalder , J. P. Pekola , D. M. Zumbuhl

We present a theoretical analysis of an innovative combination of a nuclear thermal and electromagnetic (EM) thruster. Specifically, we scrutinize the thermodynamics involved in integrating a nuclear thermal reactor with an expansion…

Instrumentation and Methods for Astrophysics · Physics 2024-01-09 Jessica Tymczak

Coherent transition radiation (CTR) from relativistic electron beam interaction with an overdense plasma foil is investigated by making use of two-dimensional particle-in-cell simulations. Well-defined single electron beam either of uniform…

Plasma Physics · Physics 2019-02-14 W. J. Ding , F. Y. Li , S. M. Weng , P. Bai , Z. M. Sheng

HPgTPCs have benefits such as low energy threshold, magnetisability, and 4$\pi$ acceptance, making them ideal for neutrino experiments such as DUNE. We present the design of an FPGA-based solution optimised for ND-GAr, which is part of the…

The dinuclear system model incorporates several essential input physical quantities, including nuclear mass, fission barrier, shell correction energy, level density parameter, and shell damping factor, etc., which are derived from diverse…

Nuclear Theory · Physics 2026-04-13 Wei Zhang , Shi-Jie Zhang , Peng-Hui Chen

In this paper, an overview of the impurity transport for three H-mode plasmas in the upcoming SPARC tokamak has been provided. The simulations have been performed within the ASTRA+STRAHL framework, using FACIT and TGLF-SAT2 to predict,…