collaborators

7 papers

physics.acc-ph2026

Bayesian Optimization of Molybdenum-99 Production by Laser Wakefield Acceleration Using Coupled PIC and Monte Carlo Simulations

Bruno Silveira Nunes, Nilson Dias Vieira Junior, Mirko Salomón Alva Sánchez +2

This work applies Bayesian optimization to a loop composed of PIC simulations of laser electron acceleration and Monte Carlo (MC) simulations of bremsstrahlung-induced nuclear reac…

physics.plasm-ph2026

Resonant Excitation of Surface Plasmon for Wakefield Acceleration by Beating GW Lasers on Smooth Cylindrical Surface

Bifeng Lei, Hao Zhang, Alexandre Bonatto +5

We present a theoretical and numerical study of resonant surface-plasmon (SP) excitation driven by the beating of two co-propagating laser pulses on a smooth cylindrical plasma-vac…

physics.plasm-ph2025

Coherent synchrotron radiation by excitation of surface plasmon polariton on near-critical solid microtube surface

Bifeng Lei, Hao Zhang, Daniel Seipt +5

Coherent synchrotron radiation (CSR) is crucial for the development of powerful ultrashort light sources. We present a mechanism for generating CSR in the form of generalised super…

physics.acc-ph2025

100s TeV/m-Level Particle Accelerators Driven by High-density Electron Beams in Micro Structured Carbon Nanotube Forest Channel

Bifeng Lei, Hao Zhang, Cristian Bontoiu +5

Solid-state materials, such as carbon nanotubes (CNTs), have the potential to support ultra-high accelerating fields in the TV/m range for charged particle acceleration. In this st…

physics.plasm-ph2025

Leaky surface plasmon-based wakefield acceleration in nanostructured carbon nanotubes

Bifeng Lei, Hao Zhang, Cristian Bontoiu +6

Metallic carbon nanotubes (CNTs) can provide ultra-dense, homogeneous plasma capable of sustaining resonant plasma waves-known as plasmons-with ultra-high field amplitudes. These w…

physics.acc-ph2025

Electron Acceleration in Carbon Nanotubes

Cristian Bontoiu, Alexandre Bonatto, Öznur Apsimon +16

Wakefield wavelengths associated with solid-state plasmas greatly limit the accelerating length. An alternative approach employs 2D carbon-based nanomaterials, like graphene or car…