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Prediction of Coherent Optical Radiation from Shock Waves in Polarizable Crystals.:Sponsored by Department of Energy, Washington, DC.

机译:可偏振晶体中冲击波的相干光辐射预测:华盛顿能源部赞助。

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We predict that coherent electromagnetic radiation in the 1-100 THz frequency range can be generated in crystalline materials when subject to a shock wave or soliton-like propagating excitation. To our knowledge, this phenomenon represents a fundamentally new form of coherent optical radiation source that is distinct from lasers and free-electron lasers. General analytical theory and molecular dynamics simulations demonstrate coherence lengths on the order of mm (around 20 THz) and potentially greater. The emission frequencies are determined by the shock speed and the lattice constants of the crystal and can potentially be used to determine atomic-scale properties of the shocked material.

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