Qubit Frequency Calibration Method Based on Ramsey Interference Experiment
A qubit and frequency calibration technology, which is applied in the field of quantum measurement and control, can solve problems such as the inability to meet the qubit frequency accuracy and the inability to realize the qubit frequency verification requirements, and achieve the effect of ensuring the qubit frequency calibration value and reducing experimental errors
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[0017] The embodiments described below by referring to the figures are exemplary only for explaining the present invention and should not be construed as limiting the present invention.
[0018] The Ramsey interference experiment refers to applying two π / 2 quantum logic gate operations to a qubit, the time interval between the two operations is τ, and at the same time applying a readout to the qubit after the second π / 2 quantum logic gate operation Pulse to obtain the excited state distribution P1(τ) of the qubit, and change the time interval τ to obtain P1(τ).
[0019] The result of a typical Ramsey interference experiment is that P1(τ) satisfies the mathematical model of exponential oscillation decay with time interval τ as follows:
[0020]
[0021] In the above formula, A and B are fitting coefficients, T 0 is the decoherence time of the qubit, f d is the carrier frequency of the microwave pulse signal corresponding to the π / 2 quantum logic gate operation, f 0 is the...
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