activity
20172021
most citedGeneration of highly pure Schrödinger's cat states and real-time quadrature measurements via optical filtering

57 citations · 138 across the 5 of their papers we have counts for

collaborators

7 papers

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…

quant-ph2019

Time-Domain Multiplexed 2-Dimensional Cluster State: Universal Quantum Computing Platform

Warit Asavanant, Yu Shiozawa, Shota Yokoyama +8

Quantum computation promises applications that are thought to be impossible with classical computation. To realize practical quantum computation, the following three properties wil…

quant-ph201757 cited

Generation of highly pure Schrödinger's cat states and real-time quadrature measurements via optical filtering

Warit Asavanant, Kota Nakashima, Yu Shiozawa +2

Until now, Schrödinger's cat states are generated by subtracting single photons from the whole bandwidth of squeezed vacua. However, it was pointed out recently that the achievable…