Nanohelices as superlattices: Bloch oscillations and electric dipole transitions

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Abstract

Subjecting a nanohelix to a transverse electric field gives rise to superlattice behavior with tunable electronic properties. We theoretically investigate such a system and find Bloch oscillations and negative differential conductance when a longitudinal electric field (along the nanohelix axis) is also applied. Furthermore, we study dipole transitions across the transverse-electric-field-induced energy gap, which can be tuned to the eulogized terahertz frequency range by experimentally attainable external fields. We also reveal a photogalvanic effect by shining circularly polarized light onto our helical quantum wire.

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Downing, C. A., Robinson, M. G., & Portnoi, M. E. (2016). Nanohelices as superlattices: Bloch oscillations and electric dipole transitions. Physical Review B, 94(15). https://doi.org/10.1103/PhysRevB.94.155306

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