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 …

Diamond quantum devices in biology

Y Wu, F Jelezko, MB Plenio… - Angewandte Chemie …, 2016 - Wiley Online Library
The currently available techniques for molecular imaging capable of reaching atomic
resolution are limited to low temperatures, vacuum conditions, or large amounts of sample …

Many-body–localized discrete time crystal with a programmable spin-based quantum simulator

J Randall, CE Bradley, FV Van Der Gronden, A Galicia… - Science, 2021 - science.org
The discrete time crystal (DTC) is a nonequilibrium phase of matter that spontaneously
breaks time-translation symmetry. Disorder-induced many-body localization can stabilize the …

Nuclear magnetic resonance detection and spectroscopy of single proteins using quantum logic

I Lovchinsky, AO Sushkov, E Urbach, NP de Leon… - Science, 2016 - science.org
Nuclear magnetic resonance spectroscopy is a powerful tool for the structural analysis of
organic compounds and biomolecules but typically requires macroscopic sample quantities …

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 …

Microwave control of the tin-vacancy spin qubit in diamond with a superconducting waveguide

I Karapatzakis, J Resch, M Schrodin, P Fuchs… - Physical Review X, 2024 - APS
Group-IV color centers in diamond are promising candidates for quantum networks due to
their dominant zero-phonon line and symmetry-protected optical transitions that connect to …

Universal control and error correction in multi-qubit spin registers in diamond

TH Taminiau, J Cramer, T van der Sar… - Nature …, 2014 - nature.com
Quantum registers of nuclear spins coupled to electron spins of individual solid-state defects
are a promising platform for quantum information processing,,,,,,,,,,,,. Pioneering experiments …

Ultralong dephasing times in solid-state spin ensembles via quantum control

E Bauch, CA Hart, JM Schloss, MJ Turner, JF Barry… - Physical Review X, 2018 - APS
Quantum spin dephasing is caused by inhomogeneous coupling to the environment, with
resulting limits to the measurement time and precision of spin-based sensors. The effects of …

Repeated quantum error correction on a continuously encoded qubit by real-time feedback

J Cramer, N Kalb, MA Rol, B Hensen, MS Blok… - Nature …, 2016 - nature.com
Reliable quantum information processing in the face of errors is a major fundamental and
technological challenge. Quantum error correction protects quantum states by encoding a …

Quantum sensing of radio-frequency signal with NV centers in SiC

Z Jiang, H Cai, R Cernansky, X Liu, W Gao - Science advances, 2023 - science.org
Silicon carbide is an emerging platform for quantum technologies that provides wafer scale
and low-cost industrial fabrication. The material also hosts high-quality defects with long …