Jeremias Resch
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View article: High-fidelity control of a $^{13}$C nuclear spin coupled to a tin-vacancy center in diamond
High-fidelity control of a $^{13}$C nuclear spin coupled to a tin-vacancy center in diamond Open
Nuclear spins near group-IV defects in diamond are promising candidates for quantum memories in quantum network applications. Here, we demonstrate high-fidelity control of a single $^{13}$C nuclear spin coupled to a tin-vacancy (SnV) cente…
View article: Optically detected nuclear magnetic resonance of coherent spins in a molecular complex
Optically detected nuclear magnetic resonance of coherent spins in a molecular complex Open
Nuclear magnetic resonance (NMR) is a powerful tool for applications ranging from chemical analysis to quantum information processing. Achieving optical initialization and detection of molecular nuclear spins promises new opportunities - i…
View article: Microwave Control of the Tin-Vacancy Spin Qubit in Diamond with a Superconducting Waveguide
Microwave Control of the Tin-Vacancy Spin Qubit in Diamond with a Superconducting Waveguide Open
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 coherent spin levels. The negatively charged tin-vacancy (SnV…
View article: Microwave Control of the Tin-Vacancy Spin Qubit in Diamond with a Superconducting Waveguide
Microwave Control of the Tin-Vacancy Spin Qubit in Diamond with a Superconducting Waveguide Open
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 coherent spin levels. The negatively charged tin-vacancy (SnV…