Precision tests of QED and non-standard models by searching photon-photon scattering in vacuum with high power lasers
arXiv:0909.4663 · doi:10.1088/1126-6708/2009/11/043
Abstract
We study how to search for photon-photon scattering in vacuum at present petawatt laser facilities such as HERCULES, and test Quantum Electrodynamics and non-standard models like Born-Infeld theory or scenarios involving minicharged particles or axion-like bosons. First, we compute the phase shift that is produced when an ultra-intense laser beam crosses a low power beam, in the case of arbitrary polarisations. This result is then used in order to design a complete test of all the parameters appearing in the low energy effective photonic Lagrangian. In fact, we propose a set of experiments that can be performed at HERCULES, eventually allowing either to detect photon-photon scattering as due to new physics, or to set new limits on the relevant parameters, improving by several orders of magnitude the current constraints obtained recently by PVLAS collaboration. We also describe a multi-cross optical mechanism that can further enhance the sensitivity, enabling HERCULES to detect photon-photon scattering even at a rate as small as that predicted by QED. Finally, we discuss how these results can be improved at future exawatt facilities such as ELI, thus providing a new class of precision tests of the Standard Model and beyond.
15 pages, 2 figures. Corrected few mistakes in section and 4. Results unchanged. Added a reference
References in corpus (10)
- Nonlinear collective effects in photon-photon and photon-plasma interactions
- Polarized Light Propagating in a Magnetic Field as a Probe of Millicharged Fermions
- Search for Stimulated Photon-Photon Scattering in Vacuum
- On the Particle Interpretation of the PVLAS Data: Neutral versus Charged Particles
- Limits on Low Energy Photon-Photon Scattering from an Experiment on Magnetic Vacuum Birefringence
- Strong laser fields as a probe for fundamental physics
- Detecting photon-photon scattering in vacuum at exawatt lasers
- Nonlinear phase shift from photon-photon scattering in vacuum
- Probing For New Physics and Detecting non linear vacuum QED effects using gravitational wave interferometer antennas
- Nonlinear Propagation of Crossing Electromagnetic Waves in Vacuum due to Photon-Photon Scattering
Cited by in corpus (42)
- Measuring Vacuum Polarisation with High Power Lasers
- High-Energy Vacuum Birefringence and Dichroism in an Ultrastrong Laser Field
- Measurement of damping and temperature: Precision bounds in Gaussian dissipative channels
- Shadow, deflection angle and quasinormal modes of Born-Infeld charged black holes
- Double-slit vacuum polarisation effects in ultra-intense laser fields
- Light by light diffraction in vacuum
- Finite Field-Energy and Interparticle Potential in Logarithmic Electrodynamics
- Remarks on nonlinear Electrodynamics
- All-optical signatures of quantum vacuum nonlinearities in generic laser fields
- Axion-like-particle search with high-intensity lasers
- Boosting quantum vacuum signatures by coherent harmonic focusing
- Photonic processes in Born-Infeld theory
- Towards an in situ, full-power gauge of the focal-volume intensity of petawatt-class lasers
- Vacuum polarization tensor in inhomogeneous magnetic fields
- Dispersion Relations in Non-Linear Electrodynamics and the Kinematics of the Compton Effect in a Magnetic Background
- Self-induced mode mixing of ultraintense lasers in vacuum
- Considerations on the modified Maxwell electrodynamics in the presence of an electric and magnetic background
- Observing Light-by-Light Scattering in Vacuum with an Asymmetric Photon Collider
- On the Heisenberg limit for detecting vacuum birefringence
- Magnetically amplified light-shining-through-walls via virtual minicharged particles
- A note on nonlinear electrodynamics
- Topological Born-Infeld charged black holes in Einsteinian cubic gravity
- The QED four-photon amplitudes off-shell: part 2
- The QED four -- photon amplitudes off-shell: part 1
- Polarization-operator approach to optical signatures of axion-like particles in strong laser pulses
- Particle Production Reactions in Laser-Boosted Lepton Collisions
- On the observability of field-assisted birefringent Delbrück scattering
- Coulomb's law modification driven by a logarithmic electrodynamics
- Towards a direct measurement of the quantum vacuum Lagrangian coupling coefficients using two counter propagating super-intense laser pulses
- Light dark matter candidates in intense laser pulses I: paraphotons and fermionic minicharged particles
- Axionlike-particle generation by laser-plasma interaction
- Vacuum material properties and Cherenkov radiation in Logarithmic Electrodynamics
- Comparative of light propagation in Born-Infeld, Euler-Heisenberg and ModMax nonlinear electrodynamics
- Minicharged particles search by strong laser pulse-induced vacuum polarization effects
- Light dark matter candidates in intense laser pulses II: the relevance of the spin degrees of freedom
- Numerical Simulations of the Nonlinear Quantum Vacuum in the Heisenberg-Euler Weak-Field Expansion
- Remarks on propagating waves in non-linear vacuum electrodynamics
- Measuring Extreme Vacuum Pressure with Ultra-Intense Lasers
- On the absence of shock waves and vacuum birefringence in Born--Infeld electrodynamics
- Interferometric Differential High-Frequency Lock-In Probe for Laser-Induced Vacuum Birefringence
- Remarks on inverse electrodynamics
- Electromagnetic waves in Born Electrodynamics