collaborators

10 papers

quant-ph2026

Teleportation-based squeezer for bosonic cluster states

Michal Matulík, Radim Filip, Petr Marek

The one-way quantum computation utilizing bosonic modes of light offers unmatched scalability of light modes, and it has seen rapid experimental development recently. Scalability r…

quant-ph2026

Picosecond Schrödinger cat states for ultrafast optical quantum processing

Mamoru Endo, Kan Takase, Takefumi Nomura +12

Non-Gaussian states are essential resources for universal, fault-tolerant optical quantum computing, but their generation rate remains limited by low heralding probabilities and op…

quant-ph2026

Beyond Stellar Rank: Control Parameters for Scalable Optical Non-Gaussian State Generation

Fumiya Hanamura, Kan Takase, Hironari Nagayoshi +6

Advanced quantum technologies rely on non-Gaussian states of light, essential for universal quantum computation, fault-tolerant error correction, and quantum sensing. Their practic…

quant-ph2026

Tuning Wave-Particle Duality of Quantum Light by Generalized Photon Subtraction

Kan Takase, Mamoru Endo, Fumiya Hanamura +11

Wave--particle duality is a hallmark of quantum mechanics. For bosonic systems, there exists a continuum of intermediate states bridging wave-like Schrödinger cat states and parti…

quant-ph2026

Distributed Phase-Insensitive Displacement Sensing

Piotr T. Grochowski, Matteo Fadel, Radim Filip

Distributed quantum sensing leverages quantum correlations among multiple sensors to enhance the precision of parameter estimation beyond classical limits. Most existing approaches…

quant-ph2026

Sub-Planck structure quantification in non-Gaussian probability densities

Darren W. Moore, Vojtěch Švarc, Kratveer Singh +5

Sub-Planck structures in non-Gaussian probability densities of phase space variables are pervasive in bosonic quantum systems. They are almost universally present if the bosonic sy…