Precision of single-qubit gates based on Raman transitions

被引:0
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作者
X. Caillet
C. Simon
机构
[1] Laboratoire de Spectrométrie Physique,
[2] CNRS,undefined
[3] Université de Grenoble 1,undefined
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关键词
03.67.Lx Quantum computation; 73.21.La Quantum dots; 13.10.+n Effects of noise and imperfections; 15.10.Qd Quantum dots; 16.10.Es Electrons in semiconductors: spin;
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摘要
We analyze the achievable precision for single-qubit gates that are based on off-resonant Raman transitions between two near-degenerate ground states via a virtually excited state. In particular, we study the errors due to non-perfect adiabaticity and due to spontaneous emission from the excited state. For the case of non-adiabaticity, we calculate the error as a function of the dimensionless parameter χ=Δτ, where Δ is the detuning of the Raman beams and τ is the gate time. For the case of spontaneous emission, we give an analytical argument that the gate errors are approximately equal to Λ γ/Δ, where Λ is the rotation angle of the one-qubit gate and γ is the spontaneous decay rate, and we show numerically that this estimate holds to good approximation.
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页码:341 / 348
页数:7
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