Remote cooling of spin-ensembles through a spin-mechanical hybrid interface. npj Quantum Information, (11)1:24, Feb 7, 2025. [PUMA: pi3 wrachtrup] URL
Studying critical parameters of superconductor via diamond quantum sensors. New Journal of Physics, (27)2:023013, IOP Publishing, February 2025. [PUMA: pi3 wrachtrup] URL
Nanoscale Mapping of Magnetic Auto-Oscillations with a Single Spin Sensor. Nano Letters, (25)5:1917–1924, American Chemical Society (ACS), January 2025. [PUMA: pi3 wrachtrup] URL
Scalable production of ultraflat and ultraflexible diamond membrane. Nature, (636)8043:627--634, Dec 1, 2024. [PUMA: pi3 wrachtrup] URL
Blueprint for efficient nuclear spin characterization with color centers. Physical Review B, (109)21American Physical Society (APS), June 2024. [PUMA: pi3 wrachtrup] URL
Qudit-Based Spectroscopy for Measurement and Control of Nuclear-Spin Qubits in Silicon Carbide. Physical Review Letters, (132)9American Physical Society (APS), February 2024. [PUMA: pi3 wrachtrup] URL
High-Fidelity Optical Readout of a Nuclear-Spin Qubit in Silicon Carbide. Physical Review Letters, (132)18:180804, American Physical Society (APS), May 2024. [PUMA: pi3 wrachtrup] URL
Reducing inhomogeneous broadening of spin and optical transitions of nitrogen-vacancy centers in high-pressure, high-temperature diamond. Communications Materials, (5)1:224, Oct 11, 2024. [PUMA: pi3 wrachtrup] URL
Integrating the tin-vacancy defect into diamond nanostructures. In Philip R. Hemmer, and Alan L. Migdall (Eds.), Quantum Computing, Communication, and Simulation IV, SPIE, March 2024. [PUMA: pi3 wrachtrup] URL
Photonic integration of 171ytterbium single photon sources into an LiNbO3-based photonic platform. In Philip R. Hemmer, and Alan L. Migdall (Eds.), Quantum Computing, Communication, and Simulation IV, (12911):129110X, SPIE, 2024. [PUMA: pi3 wrachtrup] URL
Mechanism for selective initialization of silicon-vacancy spin qubits with S = 3/2 in silicon carbide. Phys. Rev. Appl., (21)5:054005, American Physical Society, May 2024. [PUMA: pi3 wrachtrup] URL
The silicon vacancy centers in SiC: determination of intrinsic spin dynamics for integrated quantum photonics. npj Quantum Information, (10)1:72, Jul 23, 2024. [PUMA: pi3 wrachtrup] URL
Precise Characterization of a Waveguide Fiber Interface in Silicon Carbide. ACS Photonics, (11)6:2160–2170, American Chemical Society (ACS), May 2024. [PUMA: pi3 wrachtrup] URL
Fluorescence Enhancement of Single V2 Centers in a 4H-SiC Cavity Antenna. Nano Letters, (24)30:9289–9295, American Chemical Society (ACS), July 2024. [PUMA: pi3 wrachtrup] URL
Single-molecule scale magnetic resonance spectroscopy using quantum diamond sensors. Rev. Mod. Phys., (96)2:025001, American Physical Society, May 2024. [PUMA: pi3 wrachtrup] URL
Roadmap on nanoscale magnetic resonance imaging. Nanotechnology, (35)41:412001, IOP Publishing, July 2024. [PUMA: pi3 wrachtrup] URL
A scanning probe microscope compatible with quantum sensing at ambient conditions. Review of Scientific Instruments, (95)5AIP Publishing, May 2024. [PUMA: pi3 wrachtrup] URL
Fault-tolerant one-bit addition with the smallest interesting color code. Science Advances, (10)29:eado9024, 2024. [PUMA: pi3] URL
Suppression of thermal diffusion of vacancies across p^+ -0.2em-n junction structures in diamond. Application to SnV centers by ion implantation. New Journal of Physics, (26)5:053036, IOP Publishing, May 2024. [PUMA: pi3 wrachtrup] URL
High-Fidelity Optical Readout of a Nuclear-Spin Qubit in Silicon Carbide. Phys. Rev. Lett., (132)18:180804, American Physical Society, May 2024. [PUMA: pi3 wrachtrup] URL