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arxiv: 1703.04165 · v2 · pith:FFOMAQGUnew · submitted 2017-03-12 · 🪐 quant-ph · cond-mat.mes-hall· physics.atom-ph· physics.comp-ph

Suppression of multiphoton resonances in driven quantum systems via pulse shape optimization

classification 🪐 quant-ph cond-mat.mes-hallphysics.atom-phphysics.comp-ph
keywords multiphotondrivendrivingfloquetfourieroptimizationpulsesuppression
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This Letter demonstrates control over multiphoton absorption processes in driven two-level systems, which include for example superconducting qubits or laser-irradiated graphene, through spectral shaping of the driving pulse. Starting from calculations based on Floquet theory, we use differential evolution, a general purpose optimization algorithm, to find the Fourier coefficients of the driving function that suppress a given multiphoton resonance in the strong field-regime. We show that the suppression of the transition probability is due to the coherent superposition of high-order Fourier harmonics which closes the dynamical gap between the Floquet states of the two-level system.

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