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Theory of Fast Optical Spin Rotation in a Quantum Dot Based on Geometric Phases and Trapped States.

机译:基于几何相位和陷阱态的量子点快速光学自旋旋转理论。

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A method is proposed for the optical rotation of the spin of an electron in a quantum dot using excited trion states to implement operations significantly faster than those of most existing proposals. Key ingredients are the geometric phase induced by 2 hyperbolic secant pulses, use of coherently trapped states and use of naturally dark states. Our proposal covers a variety of quantum dots by addressing different parameter regimes. Numerical simulations with typical parameters for InAs self-assembled quantum dots, including their dissipative dynamics, give fidelities of the operations in excess of 99%.

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