Choreographed entanglement dances: Topological states of quantum matter.

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ID: 97138
2019
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Abstract
It has long been thought that all different phases of matter arise from symmetry breaking. Without symmetry breaking, there would be no pattern, and matter would be featureless. However, it is now clear that for quantum matter at zero temperature, even symmetric disordered liquids can have features, giving rise to topological phases of quantum matter. Some of the topological phases are highly entangled (that is, have topological order), whereas others are weakly entangled (that is, have symmetry-protected trivial order). This Review provides a brief summary of these zero-temperature states of matter and their emergent properties, as well as their importance in unifying some of the most basic concepts in nature.
Reference Key
wen2019choreographedscience Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors Wen, Xiao-Gang;
Journal science (new york, ny)
Year 2019
DOI
eaal3099
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Keywords Keywords not found

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