On Cohen–Macaulayness of Algebras Generated by Generalized Power Sums
- Creators
- Etingof, Pavel
-
Rains, Eric
Abstract
Generalized power sums are linear combinations of ith powers of coordinates. We consider subalgebras of the polynomial algebra generated by generalized power sums, and study when such algebras are Cohen–Macaulay. It turns out that the Cohen–Macaulay property of such algebras is rare, and tends to be related to quantum integrability and representation theory of Cherednik algebras. Using representation theoretic results and deformation theory, we establish Cohen–Macaulayness of the algebra of q, t-deformed power sums defined by Sergeev and Veselov, and of some generalizations of this algebra, proving a conjecture of Brookner, Corwin, Etingof, and Sam. We also apply representation-theoretic techniques to studying m-quasi-invariants of deformed Calogero–Moser systems. In an appendix to this paper, M. Feigin uses representation theory of Cherednik algebras to compute Hilbert series for such quasi-invariants, and show that in the case of one light particle, the ring of quasi-invariants is Gorenstein.
Additional Information
© 2016 Springer-Verlag Berlin Heidelberg. To Sasha Veselov on his 60th birthday, with admiration. Received: 28 July 2015. Accepted: 15 March 2016. Published online: 26 May 2016. The work of P.E. was partially supported by the NSF grant DMS-1000113. M.F. is very grateful to P. Etingof for a number of useful and helpful discussions and comments, to I. Losev for explanations about [EGL], to C. Korff, J. Nimmo, and A.P. Veselov for useful discussions. M.F. would also like to thank V. Lunts for the hospitality at his summer seminar 2013, where a part of this work was done.Attached Files
Submitted - 1507.07485v1.pdf
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Additional details
- Eprint ID
- 70916
- DOI
- 10.1007/s00220-016-2657-0
- Resolver ID
- CaltechAUTHORS:20161006-112242015
- NSF
- DMS-1000113
- Created
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2016-10-12Created from EPrint's datestamp field
- Updated
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2021-11-11Created from EPrint's last_modified field