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Controlling Cherenkov threshold with nonlocality

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arxiv 2002.04252 v1 pith:YV66PQY5 submitted 2020-02-11 physics.app-ph physics.optics

Controlling Cherenkov threshold with nonlocality

classification physics.app-ph physics.optics
keywords cherenkovnonlocalityradiationlower-boundthresholdthreshold-freethresholdsvelocity
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Cherenkov radiation is generally believed to be threshold-free in hyperbolic metamaterials owing to the extremely large photonic density of states in classical local framework. While recent advances in nonlocal and quantum effects extend our understanding of light-matter interactions in metallic nanostructures, the influence of nonlocality on threshold-free Cherenkov radiation still remains elusive. Here we theoretically demonstrate that the nonlocality provides an indispensable way to flexibly engineer Cherenkov thresholds in metallodielectric layered structures. Particularly, the nonlocality results in a lower-bound velocity cutoff, whose value is comparable to the electron Fermi velocity. Surprisingly, this lower-bound threshold can be significantly smaller than the classically predicted one if the metamaterial works around epsilon-near-zero frequencies. The capability to control Cherenkov thresholds opens numerous prospects for practical applications of Cherenkov radiation, in particular, for integrated free-electron radiation sources.

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