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Theoretical Calculation of coherent Laue-case conversion between X rays and ALPs for an X-ray LSW experiment

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arxiv 1709.03299 v3 pith:E6FP7WYU submitted 2017-09-11 physics.ins-det

classification physics.ins-det
keywords alpsx-raycalculationconversionfieldslaue-caserayscrystals
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Single crystals have high atomic electric fields as much as 10^{11} V/m, which correspond to magnetic fields of \sim 10^3 T. These fields can be utilized to convert X rays into Axion Like Particles (ALPs) coherently similar to X-ray diffraction. In this paper, we perform the first theoretical calculation of the Laue-case conversion in crystals based on the Darwin dynamical theory of X-ray diffraction. The calculation shows that the Laue-case conversion has longer interaction length than the Bragg case, and that ALPs in the keV range can be resonantly converted by tuning an incident angle of X rays. ALPs with mass up to O(10 keV) can be searched by Light-Shining-through-a-Wall (LSW) experiments at synchrotron X-ray facilities.

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Cited by 1 Pith paper

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  1. Coherent Axion Production through Laser Crystal Interaction

    hep-ph 2024-12 reject novelty 6.0 of 10

    The authors propose coherent axion production in ionic crystals via phase-matched optical lasers, claiming up to two orders of magnitude higher conversion probability than light-shining-through-wall experiments.

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