Signatures of vacuum birefringence in low-power flying focus pulses
arXiv:2307.11734 · doi:10.1103/PhysRevD.109.056009
Abstract
Vacuum birefringence produces a differential phase between orthogonally polarized components of a weak electromagnetic probe in the presence of a strong electromagnetic field. Despite representing a hallmark prediction of quantum electrodynamics, vacuum birefringence remains untested in pure light configurations due to the extremely large electromagnetic fields required for a detectable phase difference. Here, we exploit the programmable focal velocity and extended focal range of a flying focus laser pulse to substantially lower the laser power required for detection of vacuum birefringence. In the proposed scheme, a linearly polarized x-ray probe pulse counter-propagates with respect to a flying focus pulse, whose focus moves at the speed of light in the same direction as the x-ray probe. The peak intensity of the flying focus pulse overlaps the probe over millimeter-scale distances and induces a polarization ellipticity on the order of , which lies within the detection sensitivity of existing x-ray polarimeters.
14 pages, 5 figures
References in corpus (34)
- Advances in QED with intense background fields
- Charged particle motion and radiation in strong electromagnetic fields
- A matterless double slit
- Relativistic Plasma Physics in Supercritical Fields
- Photon polarisation in light-by-light scattering: finite size effects
- Double-slit vacuum polarisation effects in ultra-intense laser fields
- Photon splitting in a laser field
- Probing vacuum polarization effects with high-intensity lasers
- Quantum Electrodynamical Photon Splitting in Magnetized Nonlinear Pair Plasmas
- Laser photon merging in an electromagnetic field inhomogeneity
- Vacuum acceleration of electrons in a dynamic laser pulse
- Direct accessibility of the fundamental constants governing light-by-light scattering
- Nonlinear Thomson scattering with ponderomotive control
- Spatiotemporal control of laser intensity through cross-phase modulation
- Beam Distortion Effects upon focusing an ultrashort Petawatt Laser Pulse to greater than 10 W/cm
- Exact solutions for the electromagnetic fields of a flying focus
- Vacuum birefringence at x-ray free-electron lasers
- Unveiling the transverse formation length of nonlinear Compton scattering
- Classical and quantum dynamics of a charged scalar particle in a background of two counterpropagating plane waves
- Photon acceleration in vacuum
- Report on Progress in Physics: Observation of the Breit-Wheeler Process and Vacuum Birefringence in Heavy-Ion Collisions
- Nonlinear spatiotemporal control of laser intensity
- Electromagnetic Solitons in Quantum Vacuum
- On the Heisenberg limit for detecting vacuum birefringence
- Circularly polarized waves in a plasma with vacuum polarization effects
- Strong-field vacuum polarisation with high energy lasers
- The QED four-photon amplitudes off-shell: part 2
- The QED four -- photon amplitudes off-shell: part 1
- On the observability of field-assisted birefringent Delbrück scattering
- QED vacuum nonlinearity in Laguerre-Gauss beams
- Charged particle beam transport in a flying focus pulse with orbital angular momentum
- Two-beam laser photon merging
- Radiation from polarized vacuum in a laser-particle collision
- Quantum electrodynamic effects on the two-stream instability
Cited by in corpus (7)
- Letter of Intent: Towards a Vacuum Birefringence Experiment at the Helmholtz International Beamline for Extreme Fields
- Laser wakefield acceleration of ions with a transverse flying focus
- Fundamental constants from photon-photon scattering in three-beam collisions
- On Measuring Stimulated Photon-photon Scattering using Multiple Ultraintense Lasers
- Phase transition analogs in laser collisions with a dark-field setup
- Flying focus with arbitrary directionality for spatiotemporal control of laser pulses
- Enhanced quantum radiation with flying-focus laser pulses