4 papers
Explicit Quantum Circuit Simulation of Nonlinear 1-Dimensional Fluid with Carleman-linearized Boltzmann Method
Keita Kanno, Kazumasa Ueno, Hayato Higuchi +5
Quantum computation of fluid dynamics has attracted growing attention as a key application of fault-tolerant quantum computers anticipated in the coming decade, with lattice Boltzm…
A Demonstration of Quantum Circuit Implementation for Obstacle Flow Using Carleman-Linearized Lattice Boltzmann Method
Kazumasa Ueno, Keita Kanno, Yasunori Lee
Fluid simulations, especially at high Reynolds numbers, are computationally expensive on classical computers, making them promising application targets for quantum computing. Recen…
Quantum algorithm for the collision-coalescence of cloud droplets
Kazumasa Ueno, Hiroaki Miura
Quantum computing is gaining attention as a new approach for solving complex problems in many scientific fields. In atmospheric and oceanic sciences, it may help reduce computation…
Quantum Algorithm for a Stochastic Multicloud Model
Kazumasa Ueno, Hiroaki Miura
Quantum computers have attracted much attention in recent years. This is because the development of the actual quantum machine is accelerating. Research on how to use quantum compu…