Postdoc in Experimental Photonic Quantum Computing - DTU Physics
Tasks
- Benchmark MBGBS processors
- Demonstrate quantum advantage for computational tasks
- Design implement and characterize photonic architectures for continuous variable cluster states
- Develop and test hybrid detection protocols for quantum computing
- Experimentally develop photonic systems for measurement based Gaussian boson sampling
- Generate inject and detect non Gaussian states and measurements
- Integrate squeezing and interferometric networks
- Publish research results and present at conferences and workshops
Perks/Benefits
- N/A
Skills/Tech-stack
Boson sampling | Cluster states | Continuous variable quantum information | Control Systems | Data acquisition | Experimental automation | Experimental quantum optics | FPGA programming | Feed-forward control | Gaussian boson sampling | Heterodyne detection | Homodyne Detection | Hybrid Detection | Integrated photonics | Interferometry | LNOI | Measurement based quantum computing | Multimode entanglement | Non Gaussian quantum operations | Nonlinear photonics | Numerical modeling | Optical Design | Photon counting | Quantum Computing | Quantum Information | Quantum Operations | Quantum optics | Quantum state characterization | Real Time | Real time feed forward control | Silicon Nitride | Silicon Photonics | Squeezed Light
Education
Roles
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