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Condensates and instanton - torus knot duality: Hidden Physics at UV scale

Producción científica: Articlerevisión exhaustiva

4 Citas (Scopus)

Resumen

We establish the duality between the torus knot superpolynomials or the Poincaré polynomials of the Khovanov homology and particular condensates in Ω-deformed 5D supersymmetric QED compactified on a circle with 5d Chern-Simons (CS) term. It is explicitly shown that n-instanton contribution to the condensate of the massless flavor in the background of four-observable exactly coincides with the superpolynomial of the T(n, nk+ 1) torus knot where k is the level of CS term. In contrast to the previously known results, the particular torus knot corresponds not to the partition function of the gauge theory but to the particular instanton contribution and summation over the knots has to be performed in order to obtain the complete answer. The instantons are sitting almost at the top of each other and the physics of the "fat point" where the UV degrees of freedom are slaved with point-like instantons turns out to be quite rich. Also we see knot polynomials in the quantum mechanics on the instanton moduli space. We consider the different limits of this correspondence focusing at their physical interpretation and compare the algebraic structures at the both sides of the correspondence. Using the AGT correspondence, we establish a connection between superpolynomials for unknots and q-deformed DOZZ factors.

Idioma originalEnglish
Páginas (desde-hasta)366-399
Número de páginas34
PublicaciónNuclear Physics B
Volumen900
DOI
EstadoPublished - nov 1 2015

Nota bibliográfica

Publisher Copyright:
© 2015.

Financiación

We would like to thank K. Bulycheva, I. Danilenko, M. Gorsky, S. Gukov, S. Nechaev, A. Vainshtein and especially E. Gorsky and N. Nekrasov for the useful discussions. The research was carried out at the IITP RAS at the expense of the Russian Foundation for Sciences (project No. 14-50-00150 ).

FinanciadoresNúmero del financiador
Fundação para a Ciência e Tecnologia I.P.PTDC/CCI-BIO/29266/2017
Russian Science Foundation14-50-00150

    ASJC Scopus subject areas

    • Nuclear and High Energy Physics

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