Knowing a quantum system's environment is critical for its practical use as a quantum device. Qubit sensors can reconstruct the noise spectral density of a classical bath, provided long enough coherence time. Here, we present a protocol that can unravel the characteristics of a more complex environment, comprising both unknown coherently coupled quantum systems, and a larger quantum bath that can be modeled as a classical stochastic field. We exploit the rich environment of a nitrogen-vacancy center in diamond, tuning the environment behavior with a bias magnetic field, to experimentally demonstrate our method. We show how to reconstruct the noise spectral density even when limited by relatively short coherence times, and identify the local...
Understanding the dynamics of a quantum bit’s environment is essential for the realization of practi...
The coherent control of spin qubits forms the basis of many applications in quantum information proc...
The coherent control of spin qubits forms the basis of many applications in quantum information proc...
Interactions between a quantum system and its environment are usually inevitable and could lead to d...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering...
Understanding the dynamics of a quantum bit's environment is essential for the realization of practi...
Understanding the dynamics of a quantum bit's environment is essential for the realization of practi...
Multi-qubit systems are crucial for the advancement and application of quantum science. Such systems...
© COPYRIGHT SPIE. Downloading of the abstract is permitted for personal use only. Quantum sensors ta...
Quantum coherence in natural and artificial spin systems is fundamental to applications ranging from...
Isolated optically-active solid-state spins such as the Nitrogen-Vacancy (NV) center in diamond have...
Nitrogen-vacancy (NV) centers in diamond excel as room-temperature quantum sensors by virtue of thei...
Understanding the dynamics of a quantum bit’s environment is essential for the realization of practi...
The field of quantum science and technology has generated many ideas for new revolutionary devices t...
Understanding the physical origin of noise affecting quantum systems is important for nearly every q...
Understanding the dynamics of a quantum bit’s environment is essential for the realization of practi...
The coherent control of spin qubits forms the basis of many applications in quantum information proc...
The coherent control of spin qubits forms the basis of many applications in quantum information proc...
Interactions between a quantum system and its environment are usually inevitable and could lead to d...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering...
Understanding the dynamics of a quantum bit's environment is essential for the realization of practi...
Understanding the dynamics of a quantum bit's environment is essential for the realization of practi...
Multi-qubit systems are crucial for the advancement and application of quantum science. Such systems...
© COPYRIGHT SPIE. Downloading of the abstract is permitted for personal use only. Quantum sensors ta...
Quantum coherence in natural and artificial spin systems is fundamental to applications ranging from...
Isolated optically-active solid-state spins such as the Nitrogen-Vacancy (NV) center in diamond have...
Nitrogen-vacancy (NV) centers in diamond excel as room-temperature quantum sensors by virtue of thei...
Understanding the dynamics of a quantum bit’s environment is essential for the realization of practi...
The field of quantum science and technology has generated many ideas for new revolutionary devices t...
Understanding the physical origin of noise affecting quantum systems is important for nearly every q...
Understanding the dynamics of a quantum bit’s environment is essential for the realization of practi...
The coherent control of spin qubits forms the basis of many applications in quantum information proc...
The coherent control of spin qubits forms the basis of many applications in quantum information proc...