activity
20172022
most citedGeneration of highly pure Schrödinger's cat states and real-time quadrature measurements via optical filtering

57 citations · 156 across the 7 of their papers we have counts for

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9 papers · 1 filter

quant-ph20229 cited

Analysis of optical quantum state preparation using photon detectors in the finite-temporal-resolution regime

Tatsuki Sonoyama, Warit Asavanant, Kosuke Fukui +3

Quantum state preparation is important for quantum information processing. In particular, in optical quantum computing with continuous variables, non-Gaussian states are needed for…

quant-ph20219 cited

Heralded preparation of polarization entanglement via quantum scissors

Dat Thanh Le, Warit Asavanant, Nguyen Ba An

Quantum entanglement is at the heart of quantum information sciences and quantum technologies. In the optical domain, the most common type of quantum entanglement is polarization e…

quant-ph202126 cited

Wave-function engineering via conditional quantum teleportation with non-Gaussian entanglement resource

Warit Asavanant, Kan Takase, Kosuke Fukui +3

We propose and analyze a setup to tailor the wave functions of the quantum states. Our setup is based on the quantum teleportation circuit, but instead of the usual two-mode squeez…

quant-ph202032 cited

Nonlinear squeezing for measurement-based non-Gaussian operations in time domain

Shunya Konno, Atsushi Sakaguchi, Warit Asavanant +6

Quantum non-Gaussian gate is a missing piece to the realization of continuous-variable universal quantum operations in the optical system. In a measurement-based implementation of…

quant-ph2020

Temporal-mode continuous-variable 3-dimensional cluster state for topologically-protected measurement-based quantum computation

Kosuke Fukui, Warit Asavanant, Akira Furusawa

Measurement-based quantum computation with continuous variables in an optical setup shows the great promise towards implementation of large-scale quantum computation, where the tim…

quant-ph20193 cited

Feasibility study of a coherent feedback squeezer

Shota Yokoyama, Daniel Peace, Warit Asavanant +6

We investigate a coherent feedback squeezer that uses quantum coherent feedback (measurement-free) control. Our squeezer is simple, easy to implement, robust to the gain fluctuatio…