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1
Intro
2
Scope
3
What to Do with Quantum Simulators?
4
Resource States
5
Preparing Id Symmetry Breaking States
6
Preparing 2d Long-Range Entangled States 2d toric code state
7
A Trivial Limit of the Measurements
8
Decorated Domain Wall States
9
2 Dimensions
10
Properties of the Critical States Spatial correlation functions
11
3 Dimensional Generalizations
12
Mapping to Stat. Mech. Model Measurement angle as effective temperature
13
Phase Diagrams
14
Outline
15
Random Outcomes
16
2d Random Bond Ising Model
17
For Generic Angles
18
Decoding the Hidden Order
19
Edwards-Anderson Order Parameter
20
Discussion
Description:
Save Big on Coursera Plus. 7,000+ courses at $160 off. Limited Time Only! Grab it Explore measurement-prepared quantum phases and phase transitions in this 56-minute lecture by Zhen Bi at the Galileo Galilei Institute. Delve into topics ranging from the Ising model to gauge theory and beyond. Learn about quantum simulators, resource states, and the preparation of symmetry-breaking and long-range entangled states. Examine the properties of critical states, spatial correlation functions, and 3D generalizations. Investigate the mapping to statistical mechanics models, phase diagrams, and random outcomes in 2D random bond Ising models. Discover techniques for decoding hidden order and understanding the Edwards-Anderson order parameter in this comprehensive exploration of quantum physics.

Measurement-Prepared Quantum Phases and Phase Transitions - From Ising Model to Gauge Theory

Galileo Galilei Institute
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