Quantum coherence in natural and artificial spin systems is fundamental to applications ranging from quantum information science to magnetic-resonance imaging and identification. Several multipulse control sequences targeting generalized noise models have been developed to extend coherence by dynamically decoupling a spin system from its noisy environment. In any particular implementation, however, the efficacy of these methods is sensitive to the specific frequency distribution of the noise, suggesting that these same pulse sequences could also be used to probe the noise spectrum directly. Here we demonstrate noise spectroscopy by means of dynamical decoupling using a superconducting qubit with energy-relaxation time T1 =12 μs. We first de...
Noise spectroscopy elucidates the fundamental noise sources in spin systems, thereby serving as an e...
We report on long-term measurements of a highly coherent, nontunable superconducting transmon qubit,...
Decoherence in quantum bit circuits is presently a major limitation to their use for quantum computi...
Gate operations in a quantum information processor are generally realized by tailoring specific peri...
Gate operations in a quantum information processor are generally realized by tailoring specific peri...
Abstract System noise identification is crucial to the engineering of robust quantum systems. Altho...
Knowing a quantum system's environment is critical for its practical use as a quantum device. Qubit ...
Noise that exhibits significant temporal and spatial correlations across multiple qubits can be espe...
We report a direct measurement of the low-frequency noise spectrum in a superconducting flux qubit. ...
We report a direct measurement of the low-frequency noise spectrum in a superconducting flux qubit. ...
Interactions between a quantum system and its environment are usually inevitable and could lead to d...
Maintaining quantum coherence is a crucial requirement for quantum computation; hence protecting qua...
Thesis: S.M. in Computer Science and Engineering, Massachusetts Institute of Technology, Department ...
© 2019, The Author(s). Accurate characterization of the noise influencing a quantum system of intere...
We have studied the dephasing of a superconducting flux-qubit coupled to a DC-SQUID base oscillator...
Noise spectroscopy elucidates the fundamental noise sources in spin systems, thereby serving as an e...
We report on long-term measurements of a highly coherent, nontunable superconducting transmon qubit,...
Decoherence in quantum bit circuits is presently a major limitation to their use for quantum computi...
Gate operations in a quantum information processor are generally realized by tailoring specific peri...
Gate operations in a quantum information processor are generally realized by tailoring specific peri...
Abstract System noise identification is crucial to the engineering of robust quantum systems. Altho...
Knowing a quantum system's environment is critical for its practical use as a quantum device. Qubit ...
Noise that exhibits significant temporal and spatial correlations across multiple qubits can be espe...
We report a direct measurement of the low-frequency noise spectrum in a superconducting flux qubit. ...
We report a direct measurement of the low-frequency noise spectrum in a superconducting flux qubit. ...
Interactions between a quantum system and its environment are usually inevitable and could lead to d...
Maintaining quantum coherence is a crucial requirement for quantum computation; hence protecting qua...
Thesis: S.M. in Computer Science and Engineering, Massachusetts Institute of Technology, Department ...
© 2019, The Author(s). Accurate characterization of the noise influencing a quantum system of intere...
We have studied the dephasing of a superconducting flux-qubit coupled to a DC-SQUID base oscillator...
Noise spectroscopy elucidates the fundamental noise sources in spin systems, thereby serving as an e...
We report on long-term measurements of a highly coherent, nontunable superconducting transmon qubit,...
Decoherence in quantum bit circuits is presently a major limitation to their use for quantum computi...