YoVDO

Quantum Algorithms for Multiscale Partial Differential Equations

Offered By: Hausdorff Center for Mathematics via YouTube

Tags

Quantum Computing Courses Partial Differential Equations Courses Quantum Circuits Courses Quantum Simulation Courses

Course Description

Overview

Save Big on Coursera Plus. 7,000+ courses at $160 off. Limited Time Only!
Explore quantum algorithms for solving multiscale partial differential equations (PDEs) in this 50-minute talk by Lei Zhang from the Hausdorff Center for Mathematics. Gain insights into the Schrödingerisation method and its quantum circuit implementation, with applications to linear multiscale PDEs and multiscale Hamilton-Jacobi equations. Discover how quantum computing's potential for exponential acceleration compared to classical methods is being applied to computational physics and mathematics. Learn about recent developments in quantum simulation of PDEs, including work by Jin, Liu, Yu, Hu, and Zhang, as the speaker presents cutting-edge research in this rapidly evolving field.

Syllabus

Lei Zhang: Quantum algorithms for multiscale PDEs


Taught by

Hausdorff Center for Mathematics

Related Courses

Applied Quantum Computing III: Algorithm and Software
Purdue University via edX
Introduction to Computational Materials Design
Osaka University via edX
The Map of Quantum Computing - Quantum Computers Explained
Domain of Science via YouTube
Towards Practical Quantum Advantage - Quantum Colloquium
Simons Institute via YouTube
Quantum Computing and Simulation with Atoms
Simons Institute via YouTube