Back-reflection in dipole fields and beyond
arXiv:2510.11764 · doi:10.1103/129l-c43n
Abstract
Quantum reflection is a fascinating signature of the quantum vacuum that emerges from inhomogeneities in the electromagnetic fields. In pursuit of the prospective real-world implementation of quantum reflection in the back-reflection channel, we provide the first numerical estimates for the light-by-light scattering with dipole pulses, which are known to provide the tightest focusing of light possible. For an all-optical setup with a dipole pump and Gaussian probe of the same frequency, we find that the dominant signal signature is related mainly to the back-reflection channel from 4-wave mixing. Focusing on this, we study the particular case of a multiple focusing pulses configuration (belt configuration) as an approximation to the idealized dipole pulse. Using Bayesian optimization methods, we determine optimal parameters that maximize the detectability of a discernible back-reflection signal. Our study indicates that the optimization favors a three-beam collision setup, which we further investigate both numerically and analytically.
16 pages, 17 figures In the last version the numerical background was over-estimated during the calculation of discernible signal. The effect of this bug is minor, it slightly improves previously reported results: the discernible area becomes larger and signal-to-background ratio improves. We update the influenced figures and numbers in the text
References in corpus (37)
- Nonlinear collective effects in photon-photon and photon-plasma interactions
- Advances in QED with intense background fields
- Multiple colliding electromagnetic pulses: a way to lower the threshold of pair production from vacuum
- Evidence for light-by-light scattering and searches for axion-like particles in ultraperipheral PbPb collisions at 5.02 TeV
- Using high-power lasers for detection of elastic photon-photon scattering
- Light diffraction by a strong standing electromagnetic wave
- Measuring Vacuum Polarisation with High Power Lasers
- Anomalous radiative trapping in laser fields of extreme intensity
- Observation of light-by-light scattering in ultraperipheral Pb+Pb collisions with the ATLAS detector
- A matterless double slit
- Search for Stimulated Photon-Photon Scattering in Vacuum
- Photon-photon scattering in collisions of laser pulses
- Ultra-bright GeV photon source via controlled electromagnetic cascades in laser-dipole waves
- Stimulated photon emission from the vacuum
- Light by light diffraction in vacuum
- Probing vacuum polarization effects with high-intensity lasers
- Analysis of four-wave mixing of high-power lasers for the detection of elastic photon-photon scattering
- All-optical signatures of Strong-Field QED in the vacuum emission picture
- Three-pulse photon-photon scattering
- Photon-photon scattering at the high-intensity frontier
- Quantum Reflection as a New Signature of Quantum Vacuum Nonlinearity
- All-optical signatures of quantum vacuum nonlinearities in generic laser fields
- Vacuum birefringence in the head-on collision of XFEL and optical high-intensity laser pulses
- Prospects for studying vacuum polarisation using dipole and synchrotron radiation
- Quantum reflection of photons off spatio-temporal electromagnetic field inhomogeneities
- Orbital angular momentum coupling in elastic photon-photon scattering
- Photon merging and splitting in electromagnetic field inhomogeneities
- X-ray photon scattering at a focused high-intensity laser pulse
- Letter of Intent: Towards a Vacuum Birefringence Experiment at the Helmholtz International Beamline for Extreme Fields
- Enhancing quantum vacuum signatures with tailored laser beams
- Quantum vacuum signatures in multi-color laser pulse collisions
- An analytical formula for signal optimization in stimulated photon-photon scattering setup with three laser pulses
- Fundamental constants from photon-photon scattering in three-beam collisions
- On Measuring Stimulated Photon-photon Scattering using Multiple Ultraintense Lasers
- Numerical Simulations of the Nonlinear Quantum Vacuum in the Heisenberg-Euler Weak-Field Expansion
- Numerical optimization of quantum vacuum signals
- Phase transition analogs in laser collisions with a dark-field setup