Timeline for Capelli determinant = Duflo ( determinant) - was it known ?
Current License: CC BY-SA 3.0
10 events
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Apr 13, 2017 at 12:58 | history | edited | CommunityBot |
replaced http://mathoverflow.net/ with https://mathoverflow.net/
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Apr 7, 2012 at 8:22 | history | bounty ended | Alexander Chervov | ||
Mar 31, 2012 at 7:56 | history | edited | Alexander Chervov | CC BY-SA 3.0 |
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Mar 31, 2012 at 7:52 | history | bounty started | Alexander Chervov | ||
Mar 27, 2012 at 10:01 | history | edited | Alexander Chervov | CC BY-SA 3.0 |
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Mar 27, 2012 at 9:53 | history | edited | Alexander Chervov | CC BY-SA 3.0 |
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Mar 27, 2012 at 9:46 | comment | added | Alexander Chervov | @Qiaochu Yuan. I abused notation to shorten, deliberately, but may be it is not good idea. You are right that Poisson manifold is $g^*$, not $g$. But when I write "Center( ... )" this means I'am speaking NOT about manifold, but about algebra of functions. So correct ( but long ) way will be to write: Center(Qauntization(Fun(M)) = PoissonCenter(Fun(M)), is true by Kontsevich and in particular for $M=g^*$ this gives isomorphism $ZU(g)=S(g)^g$. | |
Mar 27, 2012 at 7:39 | comment | added | Qiaochu Yuan | In your remark don't you mean $M = \mathfrak{g}^{\ast}$? | |
Mar 27, 2012 at 7:15 | history | edited | Alexander Chervov | CC BY-SA 3.0 |
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Mar 27, 2012 at 6:59 | history | asked | Alexander Chervov | CC BY-SA 3.0 |