Understanding the physical origin of noise affecting quantum systems is important for nearly every quantum application. Quantum-noise spectroscopy has been used in various quantum systems, such as superconducting qubits, nitrogen-vacancy centers, and trapped ions. Traditional spectroscopy methods are usually efficient in measuring noise spectra with mostly monotonically decaying contributions. However, there are important scenarios in which the noise spectrum is broadband and nonmonotonous, thus posing a challenge to existing noise-spectroscopy schemes. Here we compare several methods for noise spectroscopy: spectral decomposition based on the Carr-Purcell-Meiboom-Gill sequence, the recently presented dynamic sensitivity control (DYSCO) seq...
We consider frequency estimation in a noisy environment with noisy probes. This builds on previous s...
We consider frequency estimation in a noisy environment with noisy probes. This builds on previous s...
Gate operations in a quantum information processor are generally realized by tailoring specific peri...
Interactions between a quantum system and its environment are usually inevitable and could lead to d...
Knowing a quantum system's environment is critical for its practical use as a quantum device. Qubit ...
© 2019, The Author(s). Accurate characterization of the noise influencing a quantum system of intere...
Thesis: S.M. in Computer Science and Engineering, Massachusetts Institute of Technology, Department ...
We explore the ability of a qubit probe to characterize unknown parameters of its environment. By re...
Abstract System noise identification is crucial to the engineering of robust quantum systems. Altho...
© 2018 The Author(s). Published by IOP Publishing Ltd on behalf of Deutsche Physikalische Gesellscha...
Quantum coherence in natural and artificial spin systems is fundamental to applications ranging from...
Noise spectroscopy elucidates the fundamental noise sources in spin systems, thereby serving as an e...
Quantum-enabled technologies promise advancements across a huge range of industrial, metrological an...
Quantum computers promise a considerable speedup over classical computers in solving various classes...
In quantum information processing, knowledge of the noise in the system is crucial for high-precisio...
We consider frequency estimation in a noisy environment with noisy probes. This builds on previous s...
We consider frequency estimation in a noisy environment with noisy probes. This builds on previous s...
Gate operations in a quantum information processor are generally realized by tailoring specific peri...
Interactions between a quantum system and its environment are usually inevitable and could lead to d...
Knowing a quantum system's environment is critical for its practical use as a quantum device. Qubit ...
© 2019, The Author(s). Accurate characterization of the noise influencing a quantum system of intere...
Thesis: S.M. in Computer Science and Engineering, Massachusetts Institute of Technology, Department ...
We explore the ability of a qubit probe to characterize unknown parameters of its environment. By re...
Abstract System noise identification is crucial to the engineering of robust quantum systems. Altho...
© 2018 The Author(s). Published by IOP Publishing Ltd on behalf of Deutsche Physikalische Gesellscha...
Quantum coherence in natural and artificial spin systems is fundamental to applications ranging from...
Noise spectroscopy elucidates the fundamental noise sources in spin systems, thereby serving as an e...
Quantum-enabled technologies promise advancements across a huge range of industrial, metrological an...
Quantum computers promise a considerable speedup over classical computers in solving various classes...
In quantum information processing, knowledge of the noise in the system is crucial for high-precisio...
We consider frequency estimation in a noisy environment with noisy probes. This builds on previous s...
We consider frequency estimation in a noisy environment with noisy probes. This builds on previous s...
Gate operations in a quantum information processor are generally realized by tailoring specific peri...