A new scheme for isomer pumping and depletion with high-power lasers
arXiv:2404.07909 · doi:10.1063/5.0251667
Abstract
We propose a novel scheme for the population and depletion of nuclear isomers. The scheme combines the -photons with energies keV emitted during the interaction of a contemporary high-intensity laser pulse with a plasma and one or multiple photon beams supplied by intense lasers. Due to nonlinear effects, two- or multi-photon absorption dominates over the conventional multi-step one-photon process for an optimized gamma flash. Moreover, this nonlinear effect can be greatly enhanced with the help of externally supplied low-energy photons coming from another laser. These low-energy photons act such that the effective cross-section experienced by the -photons becomes tunable, growing with the intensity of the beam. Assuming Wcm for the photon beam, an effective cross-section as large as cm to cm for the photon can be achieved. Thus, within state-of-the-art 10 PW laser facilities, the yields from two-photon absorption can reach to isomers per shot for selected states that are separated from their ground state by E2 transitions. Similar yields for transitions with higher multipolarities can be accommodated by multi-photon absorption with additional photons provided.
14 pages, 5 figures (with supplemental material). Published version
References in corpus (22)
- Direct detection of the 229Th nuclear clock transition
- Nonlinear Compton scattering in ultra-short laser pulses
- Quantum radiation reaction in laser-electron beam collisions
- Isomer triggering via nuclear excitation by electron capture
- Enhancing laser-driven proton acceleration by using micro-pillar arrays at high drive energy
- Relativistic laser driven electron accelerator using micro-channel plasma targets
- Femtosecond pumping of nuclear isomeric states by the Coulomb collision of ions with quivering electrons
- Mo isomer depletion via beam-based nuclear excitation by electron capture
- Monoenergetic High-energy Ion Source via Femtosecond Laser Incident Parallel to a Microplate
- Scaling laws for direct laser acceleration in a radiation-reaction dominated regime
- High-energy-density plasma in femtosecond-laser-irradiated nanowire array targets for nuclear reactions
- Overestimated isomer depletion due to contamination
- Excitation of the Th nucleus via a two-photon electronic transition
- Recollision induced nuclear excitation of Th
- Surface Plasmon-Driven Electron and Proton Acceleration without Grating Coupling
- Phase-dependent cross sections of deuteron-triton fusion in dichromatic intense fields with high-frequency limit
- Non-Degenerate Two-Photon Absorption in ZnSe: Experiment and Theory
- Nonlinear optical effects in a nucleus
- Solid-State Nuclear Laser with Two-Photon Pumping
- High brilliance -ray generation from the laser interaction in a carbon plasma channel
- Multi-photon stimulated grasers assisted by laser-plasma interactions
- Nuclear Physics under the low-energy, high intensity frontier