collaborators

7 papers

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…

quant-ph2026

Optimal Two-Qubit Gates for Group-IV Color-Centers in Diamond

Jurek Frey, Katharina Senkalla, Philipp J. Vetter +3

Color centers associated with group-IV dopants in diamond with long-lived nuclear spins have emerged as major candidates for distributed quantum computing nodes and quantum repeate…

quant-ph2026

Gate Optimization via Efficient Two-Qubit Benchmarking for NV Centers in Diamond

Alessandro Marcomini, Philipp J. Vetter, Tommaso Calarco +3

High-fidelity gate implementation requires sophisticated control pulses that steer the quantum system to undergo the desired transformation. Quantum Optimal Control allows to deriv…

quant-ph2025

Quantum Memory Enhanced Multipoint Correlation Spectroscopy for Statistically Polarized NMR

Tobias Spohn, Nicolas Staudenmaier, Philipp J. Vetter +6

Nuclear magnetic resonance spectroscopy with solid-state spin sensors is a promising pathway for the detection of nuclear spins at the micro- and nanoscale. Although many nanoscale…

quant-ph2025

High-Fidelity Single-Shot Readout and Selective Nuclear Spin Control for a Spin-1/2 Quantum Register in Diamond

Prithvi Gundlapalli, Philipp J. Vetter, Genko Genov +5

Quantum networks offer a way to overcome the size and complexity limitations of single quantum devices by linking multiple nodes into a scalable architecture. Group-IV color center…

quant-ph2025

High-Fidelity Electron Spin Gates for Scaling Diamond Quantum Register

Timo Joas, Florian Ferlemann, Roberto Sailer +9

Diamond is a promising platform for quantum information processing as it can host highly coherent qubits that could allow for the construction of large quantum registers. A prerequ…