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Light-induced percolative topological phase transition in type-II Weyl semimetal WTe2
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We report on an ultrafast terahertz free-carrier dynamic study of a photo-excited WTe2 thin film. In the photo-excited state, we observe a metastable electronic state featuring negative differential terahertz photoconductivity and reduced scattering rate. Detailed electrodynamics analysis and first-principal calculation attribute it to light-induced topological phase transition, reducing density of states near the Fermi level. Furthermore, the emergence of an unconventional temporal isosbestic point marks a dynamic universality, strongly suggesting a percolative interaction between the two topologically distinct phases.
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Purcell enhancement of photogalvanic currents in a van der Waals plasmonic self-cavity
Photogalvanic edge currents in WTe2 are enhanced by plasmonic self-cavity modes, producing a geometry-tunable terahertz emission resonance near 0.25 to 0.4 THz.
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