collaborators

5 papers

quant-ph2026

A First-principles Computational Framework for Quantum Decoherence in Complex Diamond Spin Environments

Huijin Park, Ha-young Jeong, Hyeonsu Kim +6

Quantum decoherence induced by defects remains a major limitation for solid-state quantum technologies, yet predicting decoherence in realistic materials remains computationally ch…

cond-mat.mes-hall2026

Photoelectrical readout and Ramsey interferometry of single shallowly implanted NV centers in diamond

Ilia Chuprina, Christoph Findler, Johannes Lang +2

Photoelectrical readout of the electronic spin state of the nitrogen-vacancy (NV) center in diamond is attracting significant interest due to the numerous advantages it possesses c…

quant-ph2026

Probing Many-Body Phenomena with Atomically Thin Nuclear Spin Layers in Diamond

Philipp J. Vetter, Christoph Findler, Antonio Verdú +10

Quantum simulation aims to recreate complex many-body phenomena in controlled environments, offering insights into dynamics that are otherwise difficult to model. Existing platform…

physics.app-ph2026

Quantum sensing-enabled deuterium NMR spectroscopy with nanoscale sensitivity at low magnetic fields

Dileep Singh, Riley W. Hooper, Christoph Findler +2

Nuclear magnetic resonance (NMR) spectroscopy provides unparalleled access to molecular structure and dynamics but is traditionally limited by weak signal strength, requiring large…

cond-mat.mes-hall2026

Impact of Photoelectric Readout Noise on Magnetic Field Sensitivity of NV Centers in Diamond

Ilia Chuprina, Genko Genov, Christoph Findler +3

Nitrogen-vacancy (NV) centers in diamond are of great interest for nano- and macro-scale magnetic field sensing. Most sensing protocols rely on conventional optical readout, which…