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1
Intro
2
Quantum cellular automata
3
Setting
4
Distance
5
Region
6
Standard notation
7
Local Hamiltonian Dynamics
8
Technical Conditions
9
Causality
10
Local operators
11
Identity
12
Causation
13
LocalityPreserving Unitaries
14
LocalityPreserving unitary
Description:
Save Big on Coursera Plus. 7,000+ courses at $160 off. Limited Time Only! Grab it Explore the intricacies of quantum-circuit models for many-body physics out of equilibrium in this comprehensive lecture by Lorenzo Piroli. Delve into topics such as quantum cellular automata, local Hamiltonian dynamics, and locality-preserving unitaries. Gain insights into key concepts including causality, local operators, and technical conditions. Examine the standard notation used in the field and understand the importance of distance and regions in quantum systems. This in-depth presentation offers a thorough exploration of the subject matter, providing a solid foundation for understanding complex quantum phenomena in non-equilibrium states.

Quantum-Circuit Models for Many-Body Physics Out of Equilibrium - Lecture 1

Galileo Galilei Institute
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