Timeline for Is the Moyal-Liouville equation $\frac{\partial \rho}{\partial t}= \frac{1}{i\hbar} [H\stackrel{\star}{,}\rho]$ used in applications?
Current License: CC BY-SA 4.0
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Feb 27, 2019 at 0:01 | history | bounty ended | Emilio Pisanty | ||
Feb 24, 2019 at 15:19 | history | edited | Cosmas Zachos | CC BY-SA 4.0 |
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Feb 24, 2019 at 14:28 | history | edited | Cosmas Zachos | CC BY-SA 4.0 |
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Jan 23, 2019 at 22:28 | vote | accept | Emilio Pisanty | ||
Dec 9, 2017 at 18:08 | history | edited | Cosmas Zachos | CC BY-SA 3.0 |
ah... english prepositions....
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Dec 8, 2017 at 23:19 | history | edited | Cosmas Zachos | CC BY-SA 3.0 |
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Dec 8, 2017 at 15:23 | history | edited | Cosmas Zachos | CC BY-SA 3.0 |
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Dec 8, 2017 at 15:01 | history | edited | Cosmas Zachos | CC BY-SA 3.0 |
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Dec 8, 2017 at 0:54 | history | edited | Cosmas Zachos | CC BY-SA 3.0 |
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Dec 7, 2017 at 23:11 | history | edited | Cosmas Zachos | CC BY-SA 3.0 |
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Dec 7, 2017 at 23:01 | history | edited | Cosmas Zachos | CC BY-SA 3.0 |
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Dec 7, 2017 at 21:55 | comment | added | Emilio Pisanty | This is fantastic. Regarding the intuition on phase space, can you comment on the relative standing of the Moyal mechanics, and other methods that try to deform the classical mechanics, with respect to the 'more quantum' views via the Wigner, Sudarshan and Husimi functions? | |
Dec 7, 2017 at 21:06 | history | edited | Cosmas Zachos | CC BY-SA 3.0 |
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Dec 7, 2017 at 20:42 | history | answered | Cosmas Zachos | CC BY-SA 3.0 |