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Nonlinear optical response in kagome lattice with inversion symmetry breaking

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arxiv 2505.08289 v1 pith:CNP43T4K submitted 2025-05-13 physics.optics cond-mat.mtrl-scics.NAmath.NA

Nonlinear optical response in kagome lattice with inversion symmetry breaking

classification physics.optics cond-mat.mtrl-scics.NAmath.NA
keywords kagomelatticematerialsnonlinearopticalphysicsresponsebands
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The kagome lattice is a fundamental model structure in condensed matter physics and materials science featuring symmetry-protected flat bands, saddle points, and Dirac points. This structure has emerged as an ideal platform for exploring various quantum physics. By combining effective model analysis and first-principles calculations, we propose that the synergy among inversion symmetry breaking, flat bands, and saddle point-related van Hove singularities within the kagome lattice holds significant potential for generating strong second-order nonlinear optical response. This property provides an inspiring insight into the practical application of the kagome-like materials, which is helpful for a comprehensive understanding of kagome lattice-related physics. Moreover, this work offers an alternative approach for designing materials with strong a second-order nonlinear optical response.

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