"Phase transition"의 두 판 사이의 차이
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imported>Pythagoras0 (새 문서: * Hohenberg, P. C., and A. P. Krekhov. ‘An Introduction to the Ginzburg-Landau Theory of Phase Transitions and Nonequilibrium Patterns’. arXiv:1410.7285 [cond-Mat], 27 October 201...) |
imported>Pythagoras0 |
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+ | ==introduction== | ||
+ | * A quantum system can undergo a radical change of its ground-state as a parameter in its Hamiltonian, such as pressure, magnetic field or impurity concentration, is tuned through a critical value, and such a quantum phase transition signals the change from one state of matter | ||
+ | to another. | ||
+ | * This insight has provided an important link between statistical mechanics, quantum many-body physics and high energy physics, and these | ||
+ | fields now share a large body of theoretical techniques and results. | ||
+ | ==articles== | ||
* Hohenberg, P. C., and A. P. Krekhov. ‘An Introduction to the Ginzburg-Landau Theory of Phase Transitions and Nonequilibrium Patterns’. arXiv:1410.7285 [cond-Mat], 27 October 2014. http://arxiv.org/abs/1410.7285. | * Hohenberg, P. C., and A. P. Krekhov. ‘An Introduction to the Ginzburg-Landau Theory of Phase Transitions and Nonequilibrium Patterns’. arXiv:1410.7285 [cond-Mat], 27 October 2014. http://arxiv.org/abs/1410.7285. |
2017년 3월 2일 (목) 11:52 판
introduction
- A quantum system can undergo a radical change of its ground-state as a parameter in its Hamiltonian, such as pressure, magnetic field or impurity concentration, is tuned through a critical value, and such a quantum phase transition signals the change from one state of matter
to another.
- This insight has provided an important link between statistical mechanics, quantum many-body physics and high energy physics, and these
fields now share a large body of theoretical techniques and results.
articles
- Hohenberg, P. C., and A. P. Krekhov. ‘An Introduction to the Ginzburg-Landau Theory of Phase Transitions and Nonequilibrium Patterns’. arXiv:1410.7285 [cond-Mat], 27 October 2014. http://arxiv.org/abs/1410.7285.