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Showing 1 to 4 of 4 for “"Ramsey interferometry"”.

  1. Electromagnetically induced transparency by NMR

    … EIT effect and confirm this prediction, using Ramsey interferometry and visibility measurements to quantify the loss of quantum phase.

    mit Repository record for Electromagnetically induced transparency by NMR (opens in a new tab)

  2. Coherent two photon excitation within an extended cloud of Rubidium 85 for the purposes of atomic interferometry and cooling

    … of Raman spectroscopy, Rabi oscillations, Ramsey interferometry and spin echo. We have found the minimum time constant for the decay in the decoherence to be 2.1fi0:2 ms, which is a result of non-radiative and partially non-stochastic dephasing mechanisms. Due to a high level of decoherence …

    soton Repository record for Coherent two photon excitation within an extended cloud of Rubidium 85 for the purposes of atomic interferometry and cooling (opens in a new tab)

  3. The silicon-vacancy centre in diamond for quantum information processing

    … of a single SiV$^{−}$ electronic spin. Through Ramsey interferometry, we measure a spin dephasing time of 115 $\pm$ 9 ns. We then investigate interactions of the SiV$^{−}$ with its environment. We analyse the hyperfine interaction of the SiV$^{−}$ spin with the nuclear spin of $^{29}$Si, with a …

    cambridge Repository record for The silicon-vacancy centre in diamond for quantum information processing (opens in a new tab)

  4. Developing the spin qubit of the tin-vacancy center in diamond for quantum networks

    … quantum control is leveraged to implement Ramsey interferometry revealing an inhomogenous coherence time T2* = 1.3(3) μs and dynamical decoupling protocols prolonging the coherence time to T2 = 300(80) μs at 1.7 K. These results establish that the SnV center possesses the desired …

    cambridge Repository record for Developing the spin qubit of the tin-vacancy center in diamond for quantum networks (opens in a new tab)