Single-molecule scale magnetic resonance spectroscopy using quantum diamond sensors

J Du, F Shi, X Kong, F Jelezko, J Wrachtrup - Reviews of Modern Physics, 2024 - APS
Single-molecule technology stands as a powerful tool, enabling the characterization of
intricate structural and dynamic information that would otherwise remain concealed within …

Nanoscale quantum sensing with nitrogen-vacancy centers in nanodiamonds–a magnetic resonance perspective

TF Segawa, R Igarashi - Progress in Nuclear Magnetic Resonance …, 2023 - Elsevier
Abstract Nanodiamonds containing fluorescent Nitrogen-Vacancy (NV) centers are the
smallest single particles, of which a magnetic resonance spectrum can be recorded at room …

Microwave spin control of a tin-vacancy qubit in diamond

EI Rosenthal, CP Anderson, HC Kleidermacher… - Physical Review X, 2023 - APS
The negatively charged tin-vacancy (SnV-) center in diamond is a promising solid-state qubit
for applications in quantum networking due to its high quantum efficiency, strong zero …

Picotesla magnetometry of microwave fields with diamond sensors

Z Wang, F Kong, P Zhao, Z Huang, P Yu, Y Wang… - Science …, 2022 - science.org
Develo** robust microwave-field sensors is both fundamentally and practically important
with a wide range of applications from astronomy to communication engineering. The …

Widefield quantum microscopy with nitrogen-vacancy centers in diamond: Strengths, limitations, and prospects

SC Scholten, AJ Healey, IO Robertson… - Journal of Applied …, 2021 - pubs.aip.org
ABSTRACT A dense layer of nitrogen-vacancy (NV) centers near the surface of a diamond
can be interrogated in a widefield optical microscope to produce spatially resolved maps of …

Optically coherent nitrogen-vacancy defect centers in diamond nanostructures

L Orphal-Kobin, K Unterguggenberger, T Pregnolato… - Physical Review X, 2023 - APS
Optically active solid-state spin defects have the potential to become a versatile resource for
quantum information processing applications. Nitrogen-vacancy defect centers (NV) in …

Emergent hydrodynamics in a strongly interacting dipolar spin ensemble

C Zu, F Machado, B Ye, S Choi, B Kobrin, T Mittiga… - Nature, 2021 - nature.com
Conventional wisdom holds that macroscopic classical phenomena naturally emerge from
microscopic quantum laws,,,,,–. However, despite this mantra, building direct connections …

Fast Wide‐Field Quantum Sensor Based on Solid‐State Spins Integrated with a SPAD Array

G Wang, F Madonini, B Li, C Li, J **ang… - Advanced Quantum …, 2023 - Wiley Online Library
Achieving fast, sensitive, and parallel measurement of a large number of quantum particles
is an essential task in building large‐scale quantum platforms for different quantum …

P1 center electron spin clusters are prevalent in type Ib diamonds

S Bussandri, D Shimon, A Equbal, Y Ren… - Journal of the …, 2023 - ACS Publications
Understanding the spatial distribution of the P1 centers is crucial for diamond-based sensors
and quantum devices. P1 centers serve as polarization sources for dynamic nuclear …

Nanoscale diamond quantum sensors for many-body physics

J Rovny, S Gopalakrishnan, ACB Jayich… - Nature Reviews …, 2024 - nature.com
Nitrogen vacancy (NV) centre quantum sensors provide unique opportunities in studying
condensed matter systems, as they are quantitative, non-invasive, physically robust, offer …