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Tuned gap in graphene through laser barrier

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arxiv 2303.17092 v2 pith:OAVJLGTD submitted 2023-03-30 cond-mat.mes-hall

Tuned gap in graphene through laser barrier

classification cond-mat.mes-hall
keywords energybarrierlasertransmissionswhengrapheneoscillationstuned
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study the effect of the energy gap on the transmission of fermions in graphene exposed to linearly polarized light as a laser barrier. We determine the energy spectrum, apply boundary conditions at interfaces, and use the transfer matrix approach to obtain transmissions for all energy modes. We show that when the energy gap increases, the oscillations of transmissions decrease dramatically until they vanish entirely. However, when the barrier width varies, the oscillations become more significant and exhibit sharp peaks. By increasing the incident energy, the laser field suppresses the Fabry-P\'erot resonance, and the transmissions move to the right when the energy gap is tuned.

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