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Related papers: CalcHEP 3.4 for collider physics within and beyond…

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Checkmate is a framework that allows the user to conveniently test simulated BSM physics events against current LHC data in order to derive exclusion limits. For this purpose, the data runs through a detector simulation and is then…

High Energy Physics - Phenomenology · Physics 2015-06-03 Jong Soo Kim , Daniel Schmeier , Jamie Tattersall , Krzysztof Rolbiecki

Molecular dynamics simulations play an increasingly important role in the rational design of (nano)-materials and in the study of biomacromolecules. However, generating input files and realistic starting coordinates for these simulations is…

I review some central physics opportunities at the 15 ... 30 GeV continuous beam electron accelerator ELFE, proposed to be built in conjunction with the DESY linear collider. Our present detailed knowledge of single parton distributions in…

High Energy Physics - Phenomenology · Physics 2008-11-26 Paul Hoyer

The CALICE collaboration is developing calorimeters for a future linear collider, and has collected a large amount of physics data during test beam efforts. For the analysis of these data, standard software available for linear collider…

Instrumentation and Detectors · Physics 2019-08-14 Mark Terwort , Angela Lucaci-Timoce

A high-energy e+e- collider, such as the ILC or CLIC, is arguably the best option to complement and extend the LHC physics programme. A lepton collider will allow for exploration of Standard Model Physics, such as precise measurements of…

Instrumentation and Detectors · Physics 2013-08-22 J. S. Marshall , M. A. Thomson

Battery models generally fall into two categories: physics-based models and ECM models. Physics-based Doyle-Fuller-Newman (DFN) models can accurately simulate the battery internal electrochemical processes, but to properly account for…

Applied Physics · Physics 2026-05-20 Han Yuan , Shen Li , Tao Zhu , Simon O'Kane , Carlos Garcia , Gregory Offer , Monica Marinescu

This paper presents the RBG-Maxwell framework, a relativistic collisional plasma simulator on GPUs. We provide detailed discussions on the fundamental equations, numerical algorithms, implementation specifics, and key testing outcomes. The…

Plasma Physics · Physics 2023-08-10 Ming-Yan Sun , Peng Xu , Jun-Jie Zhang , Qun Wang , Tai-Jiao Du , Jian-Guo Wang

We here present some recent developments of MadGraph/MadEvent since the latest published version, 4.0. These developments include: Jet matching with Pythia parton showers for both Standard Model and Beyond the Standard Model processes,…

High Energy Physics - Phenomenology · Physics 2009-02-02 Johan Alwall , Pierre Artoisenet , Simon de Visscher , Claude Duhr , Rikkert Frederix , Michel Herquet , Olivier Mattelaer

Theoretical descriptions of excited states of molecular systems in high-energy regimes are crucial for supporting and driving many experimental efforts at light source facilities. However, capturing their complicated correlation effects…

This study addresses the challenge of simulating realistic particle systems by proposing a novel particle decomposition scheme that improves the parallel performance of surface resolved particle simulations. Realistic particle systems often…

Fluid Dynamics · Physics 2024-03-21 J. E. Marquardt , N. Hafen , M. J. Krause

This paper describes the Jas4pp framework for exploring physics cases and for detector-performance studies of future particle collision experiments. Jas4pp is a multi-platform Java program for numeric calculations, scientific visualization…

Computational Physics · Physics 2021-02-09 S. V. Chekanov , G. Gavalian , N. A. Graf

High-precision analyses of supersymmetry parameters aim at reconstructing the fundamental supersymmetric theory and its breaking mechanism. A well defined theoretical framework is needed when higher-order corrections are included. We…

High Energy Physics - Phenomenology · Physics 2009-01-07 J. A. Aguilar-Saavedra , A. Ali , B. C. Allanach , R. Arnowitt , H. A. Baer , J. A. Bagger , C. Balazs , V. Barger , M. Barnett , A. Bartl , M. Battaglia , P. Bechtle , G. Belanger , A. Belyaev , E. L. Berger , G. Blair , E. Boos , M. Carena , S. Y. Choi , F. Deppisch , A. De Roeck , K. Desch , M. A. Diaz , A. Djouadi , B. Dutta , S. Dutta , H. Eberl , J. Ellis , J. Erler , H. Fraas , A. Freitas , T. Fritzsche , R. M. Godbole , G. J. Gounaris , J. Guasch , J. Gunion , N. Haba , H. E. Haber , K. Hagiwara , L. Han , T. Han , H. -J. He , S. Heinemeyer , S. Hesselbach , K. Hidaka , I. Hinchliffe , M. Hirsch , K. Hohenwarter-Sodek , W. Hollik , W. S. Hou , T. Hurth , I. Jack , Y. Jiang , D. R. T. Jones , J. Kalinowski , T. Kamon , G. Kane , S. K. Kang , T. Kernreiter , W. Kilian , C. S. Kim , S. F. King , O. Kittel , M. Klasen , J. -L. Kneur , K. Kovarik , M. Kramer , S. Kraml , R. Lafaye , P. Langacker , H. E. Logan , W. -G. Ma , W. Majerotto , H. -U. Martyn , K. Matchev , D. J. Miller , M. Mondragon , G. Moortgat-Pick , S. Moretti , T. Mori , G. Moultaka , S. Muanza , M. M. Muhlleitner , B. Mukhopadhyaya , U. Nauenberg , M. M. Nojiri , D. Nomura , H. Nowak , N. Okada , K. A. Olive , W. Oller , M. Peskin , T. Plehn , G. Polesello , W. Porod , F. Quevedo , D. Rainwater , J. Reuter , P. Richardson , K. Rolbiecki , P. Roy , R. Ruckl , H. Rzehak , P. Schleper , K. Siyeon , P. Skands , P. Slavich , D. Stockinger , P. Sphicas , M. Spira , T. Tait , D. R. Tovey , J. W. F. Valle , C. E. M. Wagner , Ch. Weber , G. Weiglein , P. Wienemann , Z. -Z. Xing , Y. Yamada , J. M. Yang , D. Zerwas , P. M. Zerwas , R. -Y. Zhang , X. Zhang , S. -H. Zhu

The quantum computation of electronic energies can break the curse of dimensionality that plagues many-particle quantum mechanics. It is for this reason that a universal quantum computer has the potential to fundamentally change…

This document proposes a collection of simplified models relevant to the design of new-physics searches at the LHC and the characterization of their results. Both ATLAS and CMS have already presented some results in terms of simplified…

High Energy Physics - Phenomenology · Physics 2012-10-16 Daniele Alves , Nima Arkani-Hamed , Sanjay Arora , Yang Bai , Matthew Baumgart , Joshua Berger , Matthew Buckley , Bart Butler , Spencer Chang , Hsin-Chia Cheng , Clifford Cheung , R. Sekhar Chivukula , Won Sang Cho , Randy Cotta , Mariarosaria D'Alfonso , Sonia El Hedri , Rouven Essig , Jared A. Evans , Liam Fitzpatrick , Patrick Fox , Roberto Franceschini , Ayres Freitas , James S. Gainer , Yuri Gershtein , Richard Gray , Thomas Gregoire , Ben Gripaios , Jack Gunion , Tao Han , Andy Haas , Per Hansson , JoAnne Hewett , Dmitry Hits , Jay Hubisz , Eder Izaguirre , Jared Kaplan , Emanuel Katz , Can Kilic , Hyung-Do Kim , Ryuichiro Kitano , Sue Ann Koay , Pyungwon Ko , David Krohn , Eric Kuflik , Ian Lewis , Mariangela Lisanti , Tao Liu , Zhen Liu , Ran Lu , Markus Luty , Patrick Meade , David Morrissey , Stephen Mrenna , Mihoko Nojiri , Takemichi Okui , Sanjay Padhi , Michele Papucci , Michael Park , Myeonghun Park , Maxim Perelstein , Michael Peskin , Daniel Phalen , Keith Rehermann , Vikram Rentala , Tuhin Roy , Joshua T. Ruderman , Veronica Sanz , Martin Schmaltz , Stephen Schnetzer , Philip Schuster , Pedro Schwaller , Matthew D. Schwartz , Ariel Schwartzman , Jing Shao , Jessie Shelton , David Shih , Jing Shu , Daniel Silverstein , Elizabeth Simmons , Sunil Somalwar , Michael Spannowsky , Christian Spethmann , Matthew Strassler , Shufang Su , Tim Tait , Brooks Thomas , Scott Thomas , Natalia Toro , Tomer Volansky , Jay Wacker , Wolfgang Waltenberger , Itay Yavin , Felix Yu , Yue Zhao , Kathryn Zurek

For problems in astrophysics, planetary science and beyond, numerical simulations are often limited to simulating fewer particles than in the real system. To model collisions, the simulated particles (aka superparticles) need to be inflated…

Earth and Planetary Astrophysics · Physics 2020-06-03 David Nesvorny , Andrew N. Youdin , Raphael Marschall , Derek C. Richardson

The High-Luminosity Large Hadron Collider at CERN will be characterized by greater pileup of events and higher occupancy, making the track reconstruction even more computationally demanding. Existing algorithms at the LHC are based on…

Accurately predicting aerothermal behavior is paramount for the effective design of hypersonic vehicles, as aerodynamic heating plays a pivotal role in influencing performance metrics and structural integrity. This study introduces a…

We introduce the software blocks_3d for computing four-point conformal blocks of operators with arbitrary Lorentz representations in 3d CFTs. It uses Zamolodchikov-like recursion relations to numerically compute derivatives of blocks around…

High Energy Physics - Theory · Physics 2021-11-24 Rajeev S. Erramilli , Luca V. Iliesiu , Petr Kravchuk , Walter Landry , David Poland , David Simmons-Duffin

Calorimeters are a crucial component in modern particle detectors. They are responsible for providing accurate energy measurements of particles produced in high-energy collisions. The demanding requirements set for next-generation collider…

Instrumentation and Detectors · Physics 2025-12-15 Bruno Rodrigues , Inês Ochoa , Agostinho Gomes

Physicists at the Large Hadron Collider (LHC) rely on detailed simulations of particle collisions to build expectations of what experimental data may look like under different theory modeling assumptions. Petabytes of simulated data are…

High Energy Physics - Experiment · Physics 2018-02-06 Michela Paganini , Luke de Oliveira , Benjamin Nachman