arXiv Open Access 2023

Charged particle beam transport in a flying focus pulse with orbital angular momentum

Martin Formanek John P. Palastro Marija Vranic Dillon Ramsey Antonino Di Piazza
Lihat Sumber

Abstrak

We demonstrate the capability of Flying Focus (FF) laser pulses with $\ell = 1$ orbital angular momentum (OAM) to transversely confine ultra-relativistic charged particle bunches over macroscopic distances while maintaining a tight bunch radius. A FF pulse with $\ell = 1$ OAM creates a radial ponderomotive barrier that constrains the transverse motion of particles and travels with the bunch over extended distances. As compared to freely propagating bunches, which quickly diverge due to their initial momentum spread, the particles co-traveling with the ponderomotive barrier slowly oscillate around the laser pulse axis within the spot size of the pulse. This can be achieved at FF pulse energies that are orders of magnitude lower than required by Gaussian or Bessel pulses with OAM. The ponderomotive trapping is further enhanced by radiative cooling of the bunch resulting from rapid oscillations of the charged particles in the laser field. This cooling decreases the mean square radius and emittance of the bunch during propagation.

Penulis (5)

M

Martin Formanek

J

John P. Palastro

M

Marija Vranic

D

Dillon Ramsey

A

Antonino Di Piazza

Format Sitasi

Formanek, M., Palastro, J.P., Vranic, M., Ramsey, D., Piazza, A.D. (2023). Charged particle beam transport in a flying focus pulse with orbital angular momentum. https://arxiv.org/abs/2301.08186

Akses Cepat

Lihat di Sumber
Informasi Jurnal
Tahun Terbit
2023
Bahasa
en
Sumber Database
arXiv
Akses
Open Access ✓