About
My name is Nimba Oshnik. I am a physicist and currently work at the intersection of quantum technology and advanced semiconductor chip manufacturing.
My work focuses on theory- and system-informed design with close collaboration across experiment, systems engineering, and industry.
I also enjoy scientific outreach and building simple, intuitive explanations of complex systems.
Work and Research
Portfolio.
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Quantum Sensing Expert · QuantumDiamonds GmbH, Munich [Present]
Quantum Sensing for Advanced Chip Metrology
Working at the interface of semiconductor chip failure analysis and diamond-based quantum sensing platforms, developing and deploying quantum sensing methods for advanced device characterization in industrial environments.
Selected contributions
- Advanced semiconductor chip analysis with quantum diamond magnetometers
- Diamond-based quantum sensing for advanced chip failure analysis
- Make in India Mittelstand roundtable — India's Industrial Acceleration 2026: Sunrise Sectors and German Opportunities
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Researcher · Forschungszentrum Jülich GmbH
Quantum Information Processing with Solid-State Spins
Investigated quantum information processing and quantum computing with solid-state spin systems in diamond and silicon carbide, in the groups of Prof. Dr. Tommaso Calarco and Prof. Dr. Frank Wilhelm-Mauch.
Selected publications
- CnNOTe Gate optimization for Nitrogen-vacancy center and 13C-nuclear spin system
- Optimal Control for nuclear spin polarization in Nitrogen-vacancy center and 13C-nuclear spins system
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Researcher · RPTU Kaiserslautern
Quantum Sensors for Material and Biological Research
Worked with Prof. Dr. Elke Neu-Ruffing; quantum-technology-relevant diamond material development and extending solid-state quantum sensing to life sciences relevant environments.
Selected publications
- FRET between NV centers in diamond and chlorophyll molecules: a novel resource for multimodal sensing and imaging in plant cells
- Nitrogen-vacancy centers in epitaxial laterally overgrown diamond: towards up-scaling of color center-based quantum technologies
- Medusa 84 SiH — a novel high selectivity electron beam resist for diamond quantum technologies
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Marie Skłodowska-Curie Early-Stage Researcher · Universität des Saarlandes & TU Kaiserslautern
Quantum Optimal Control
Applied optimal control theory to improve experiments in quantum sensing with single defects in diamond.
Selected publications
- Robust magnetometry with single nitrogen-vacancy centers via two-step optimization
- Introduction to quantum optimal control for quantum sensing with nitrogen-vacancy centers in diamond
- Optimized planar microwave antenna for nitrogen vacancy center based sensing applications
- PhD thesis — Quantum optimal control for quantum sensing with nitrogen-vacancy centers
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Research Assistant · Lunds Universitet
Deep Tissue Imaging with Lasers
Developed feedback-based wavefront shaping and phase conjugation with spatial light modulators, in the Quantum Information Group of Prof. Dr. Stefan Kröll, Atomic Physics Division."
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Master's · Central University of Tamil Nadu
Integrated Masters in Physics
Studied subluminal and superluminal light propagation in atomic medium [theoretical], in the group of Prof. Dr. R Arun.
Outreach
Outreach Portfolio.
Building simple, intuitive explanations of complex quantum systems for broad audiences.
Mountains
Nature.
Some mountain pics