Highly-efficient source of collimated multi-MeV photons driven by radiation reaction of an electron beam in a self-generated magnetic field
arXiv:1511.04487 · doi:10.1103/PhysRevLett.116.185003
Abstract
The rapid development of high brilliance X-ray radiation sources is revolutionizing physics, chemistry, and biology research through their novel applications. Another breakthrough is anticipated with the construction of next-generation laser facilities which will operate at intensities beyond , leading to higher yield, shorter wavelength radiation sources. We use numerical simulations to demonstrate that a source of collimated multi-MeV photons with conversion efficiency comparable to the one expected for these facilities is achievable at an order of magnitude lower in intensity, within reach of the existing facilities. In the optimal setup, the laser pulse irradiates a bulk solid-density target, heating the target electrons and inducing relativistic transparency. As the pulse then propagates, it generates a beam of energetic electrons which in turn drives a strong azimuthal magnetic field. This field significantly enhances the radiation reaction for the electrons, yielding tens of TW of directed MeV photons for a PW-class laser.
References in corpus (2)
Cited by in corpus (67)
- Charged particle motion and radiation in strong electromagnetic fields
- Radiation reaction in electron-beam interactions with high-intensity lasers
- Relativistic Plasma Physics in Supercritical Fields
- Collimated gamma-ray beams from structured laser-irradiated targets -- how to increase the efficiency without increasing the laser intensity
- Giant collimated gamma-ray flashes
- Relativistic laser driven electron accelerator using micro-channel plasma targets
- Universal scalings for laser acceleration of electrons in ion channels
- Matter creation via gamma-gamma collider driving by 10 PW laser pulses
- Laser-particle collider for multi-GeV photon production
- Ion Acceleration in Laser Generated Mega Tesla Magnetic Vortex
- Forward sliding-swing acceleration: electron acceleration by high-intensity lasers in strong plasma magnetic fields
- The Unexpected Role of Evolving Longitudinal Electric Fields in Generating Energetic Electrons in Relativistically Transparent Plasmas
- Leveraging extreme laser-driven magnetic fields for gamma-ray generation and pair production
- Collimated Ultra-Bright Gamma-Rays from a PW-Laser-Driven Wire Wiggler
- Generation of GeV positron and γ-photon beams with controllable angular momentum by intense lasers
- Highly efficient laser-driven Compton gamma-ray source
- Extremely intense laser-based electron acceleration in a plasma channel
- Brilliant GeV Gamma-ray flash from Inverse Compton Scattering in QED Regime
- Extremely Dense Gamma-Ray Pulses in Electron Beam-Multifoil Collisions
- Direct laser acceleration in underdense plasmas with multi-PW lasers: a path to high-charge, GeV-class electron bunches
- From local to nonlocal: higher fidelity simulations of photon emission in intense laser pulses
- Generation of ultra-relativistic monoenergetic electron bunches via a synergistic interaction of longitudinal electric and magnetic fields of a twisted laser
- Retrieving transient magnetic fields of ultrarelativistic laser plasma via ejected electron polarization
- Nonlinear Thomson scattering with ponderomotive control
- Beam Distortion Effects upon focusing an ultrashort Petawatt Laser Pulse to greater than 10 W/cm
- Radiation beaming in the quantum regime
- All-optical nonlinear Breit-Wheeler pair production with -flash photons
- Direct laser acceleration of electrons by tightly focused laser pulses
- Highly collimated electron acceleration by longitudinal laser fields in a hollow-core target
- Energy gain by laser-accelerated electrons in a strong magnetic field
- Radiation dominated particle and plasma dynamics
- Parametric investigation of laser interaction with uniform and nanostructured near-critical plasmas
- Synchrotron radiation from ultrahigh-intensity laser-plasma interactions and competition with Bremsstrahlung in thin foil targets
- Brilliant attosecond γ-ray emission and high-yield positron production from intense laser-irradiated Nano-Micro array
- Synchrotron emission from nanowire-array targets irradiated by ultraintense laser pulses
- Optimized setups for detection of Megatesla-level magnetic fields through Faraday rotation of XFEL beams
- Towards Bright Gamma-Ray Flash Generation From Tailored Target Irradiated by Multi-Petawatt Laser
- Magnetic field amplification to the gigagauss scale via dynamos driven by femtosecond lasers
- Gamma-Flash Generation in Multi-Petawatt Laser-Matter Interactions
- Gamma-Ray Flash in the Interaction of a Tightly Focused Single-Cycle Ultraintense Laser Pulse with a Solid Target
- Impact of ion dynamics on laser-driven electron acceleration and gamma-ray emission in structured targets at ultra-high laser intensities
- Sub-femtosecond wakefield injector and accelerator based on an undulating plasma bubble controlled by a laser phase
- Broadening of Cyclotron Resonance Conditions in the Relativistic Interaction of an Intense Laser with Overdense Plasmas
- Magnetization of laser-produced plasma in a chiral hollow target
- Theory and simulations of radiation friction induced enhancement of laser-driven longitudinal fields
- Deciphering in situ electron dynamics of ultrarelativistic plasma via polarization pattern of emitted gamma photons
- Sign reversal in magnetic field amplification by relativistic laser-driven microtube implosions
- Energy-chirp compensation of laser-driven ion beams enabled by structured targets
- Direct laser acceleration in varying plasma density profiles
- Multi-channel Interference in Nonperturbative Multiphoton Pair Production by Gamma Rays Colliding
- Radiative spin polarization in an ultrastrong magnetic field
- Laser-Pulse and Electron-Bunch Plasma Wakefield Accelerator
- Attosecond gamma-ray flashes and electron-positron pairs in dyadic laser interaction with micro-wire
- Radiation emission from braided electrons in interacting wakefields
- Self-absorption of synchrotron radiation in a laser-irradiated plasma
- Creating QED Photon Jets with Present-Day Lasers
- Generation of megatesla magnetic fields by intense-laser-driven microtube implosions
- High brilliance -ray generation from the laser interaction in a carbon plasma channel
- Dominance of - electron-positron pair creation in a plasma driven by high-intensity lasers
- Collimated -flash emission along the target surface irradiated by a laser at non-grazing incidence
- Relativistically transparent magnetic filaments: scaling laws, initial results and prospects for strong-field QED studies
- Phase-Matched Harmonic Generation in Strongly Magnetized Plasma
- Photon-polarization-resolved linear Breit-Wheeler pair production in a laser-plasma system
- Nanoscale subsurface dynamics of solids upon high-intensity laser irradiation observed by femtosecond grazing-incidence x-ray scattering
- Emission of electromagnetic waves as a stopping mechanism for nonlinear collisionless ionization waves in a high- regime
- Laser-Plasma Interactions Enabled by Emerging Technologies
- Effects of simulation dimensionality on laser-driven electron acceleration and photon emission in hollow micro-channel targets