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Quantifying the photocurrent fluctuation in quantum materials by shot noise

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arxiv 2303.09160 v2 pith:5RYNKJML submitted 2023-03-16 cond-mat.mtrl-sci

Quantifying the photocurrent fluctuation in quantum materials by shot noise

classification cond-mat.mtrl-sci
keywords dsnsquantumsymmetryphotocurrentinversionmaterialsfindfluctuation
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The DC photocurrent can detect the topology and geometry of quantum materials without inversion symmetry. Herein, we propose that the DC shot noise (DSN), as the fluctuation of photocurrent operator, can also be a diagnostic of quantum materials. Particularly, we develop the quantum theory for DSNs in gapped systems and identify the shift and injection DSNs by dividing the second-order photocurrent operator into off-diagonal and diagonal contributions, respectively. Remarkably, we find that the DSNs can not be forbidden by inversion symmetry, while the constraint from time-reversal symmetry depends on the polarization of light. Furthermore, we show that the DSNs also encode the geometrical information of Bloch electrons, such as the Berry curvature and the quantum metric. Finally, guided by symmetry, we apply our theory to evaluate the DSNs in monolayer GeS and bilayer MoS$_2$ with and without inversion symmetry and find that the DSNs can be larger in centrosymmetric phase.

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