- Particle physics theoretical and experimental studies
- High-Energy Particle Collisions Research
- Quantum Chromodynamics and Particle Interactions
- Particle Detector Development and Performance
- Dark Matter and Cosmic Phenomena
- Cosmology and Gravitation Theories
- Neutrino Physics Research
- Computational Physics and Python Applications
- Astrophysics and Cosmic Phenomena
- Black Holes and Theoretical Physics
- Muon and positron interactions and applications
- Particle accelerators and beam dynamics
- Radiation Detection and Scintillator Technologies
- Medical Imaging Techniques and Applications
- Particle Accelerators and Free-Electron Lasers
- Laser-Matter Interactions and Applications
- Laser-Plasma Interactions and Diagnostics
- Distributed and Parallel Computing Systems
- advanced mathematical theories
- Gamma-ray bursts and supernovae
- Stochastic processes and financial applications
- Fluid Dynamics and Heat Transfer
- Radioactive contamination and transfer
- Random Matrices and Applications
- Stochastic processes and statistical mechanics
A. Alikhanyan National Laboratory
2019-2024
Institute of High Energy Physics
2022-2024
University of Malaya
2016-2024
National University of Malaysia
2023-2024
Shanghai Jiao Tong University
2024
Istituto Nazionale di Fisica Nucleare, Sezione di Padova
2018-2023
University of Trento
2018-2023
University of Padua
2018-2023
Florida Institute of Technology
2018-2022
Seoul National University
2021
This document is the final report of ATLAS-CMS Dark Matter Forum, a forum organized by ATLAS and CMS collaborations with participation experts on theories Matter, to select minimal basis set dark matter simplified models that should support design early LHC Run-2 searches. A prioritized, compact benchmark proposed, accompanied studies parameter space these repository generator implementations. also addresses how apply Effective Field Theory formalism for collider searches present results...
This document a outlines set of simplified models for dark matter and its interactions with Standard Model particles. It is intended to summarize the main characteristics that these have when applied searches at LHC, provide number useful expressions reference. The list includes both s-channel t-channel scenarios. For s-channel, spin-0 spin-1 mediations are discussed, also realizations where Higgs particle provides portal between visible sectors. guiding principles underpinning proposed...
This paper outlines the design and development of a fast front-end electronic readout board for muon trigger detector in muEDM experiment at Paul Scherrer Institute. The detector, which consists gate aperture is strategically located end superconducting injection channel to generate signals magnetic kicker, activates upon muons into central region storage solenoid. Within field solenoid, system configuration optimized meet stringent performance specifications, including minimal signal...
We show that the wakefield driven by fast electrons inside nanowire when irradiated with an ultra-short relativistic laser pulse strips atoms to a higher charge state. Using particle-in-cell simulations, we demonstrate state agrees barrier suppression threshold of and reaches value via collision. The ionisation gold nanowires occurs only collisional-damped wakefield. found collisional high-Z depends on onset z-pinch. These results suggest different mechanism structured target in...
The muon collider represents one of the most promising solutions for a future machine exploring high energy frontier, but several challenges due to 2.2 $\mu$sec lifetime at rest have be carefully considered. LEMMA project is investigating possibility producing low emittance muon/antimuon pairs from e$^+$e$^-$ annihilation process threshold energy, resulting in small transverse beams without any additional beam cooling. However measurements available are performed higher $\sqrt{s}$ values. It...
This work introduces an experimental test of the new proposal for a low–emittance muon accelerator (LEMMA). A beam is obtained from e$^+$ e$^-$ → μ$^+$ μ$^-$ annihilation process at threshold energy 45 GeV eliminating need dedicated cooling system. series two testbeam campaigns were carried out CERN to validate this concept. The setup presented together with first preliminary results data.
Dark Matter is a hypothetical particle proposed to explain the missing matter expected from cosmological observation. The motivation of overwhelming however as it mainly deduced its gravitational interaction, for does little pinpoint what really is. In WIMPs Miracle, weakly interactive massive being candidate correctly producing current thermal relic density at weak scale, implying possibility and detecting in Large Hadron Collider. Assuming maverick within collider, be pair produced...
Gravitational waves result from various spacetime-perturbing events which are due to kinds of motions and changing distributions mass. Most studies on the source gravitational were derived dynamic character two binary compacted massive objects such as black holes neutron stars, therefore originated a single event would be interest. In this paper, we derive stress–energy tensor (SET) braneworld wormhole demonstrate how bulk-induced influence SET wormhole. Thus, study not only suggests waves,...
A highly energetic photon is emitted via nonlinear inverse Compton scattering after an electron undergoes with ultra-intense relativistic laser pulse. In the laser-nanostructured interaction, gamma photons are in different directions due to heating mechanisms. However, physics that leads such gamma-photon emission directionality still requires further understanding. This paper shows ∼53% of from nanowires fall into forward-directed cone, ∼21% backward-emitted photons. Using two-dimensional...
This work introduces a new proposal for low--emittance muon accelerator (LEMMA) in which beam is obtained from the e$^+$e$^-\rightarrow\mu^+\mu^-$ annihilation process with positrons at threshold energy of 45 GeV. The experimental test setup implemented to validate this concept presented together preliminary results data.