A new plethystic symmetric function operator and the rational compositional shuffle conjecture at t = 1/q
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Our main result here is that the specialization at md5=bfb7cfcdb14e8aaf95e847d1ef0cf7a1" title="Click to view the MathML source">t=1/q of the md5=d120c0b33398e3f66366b0b7fc128357" title="Click to view the MathML source">Qkm,kn operators studied in Bergeron et al. [2] may be given a very simple plethystic form. This discovery yields elementary and direct derivations of several identities relating these operators at md5=bfb7cfcdb14e8aaf95e847d1ef0cf7a1" title="Click to view the MathML source">t=1/q to the Rational Compositional Shuffle conjecture of Bergeron et al. [3]. In particular we show that if m, n and k   are positive integers and md5=ae30d03eead71033e8dd933c78819d88" title="Click to view the MathML source">(m,n) is a coprime pair then
md5=e7faa4800a0cf7d0b9f75f1fb511fbea">View the MathML source
where as customarily, for any integer md5=8bb5b340ddf7713ce721dd4c8dc45a37" title="Click to view the MathML source">s≥0 and indeterminate u   we set md5=a73edd762f790ee2e9079d30254e214e" title="Click to view the MathML source">[s]u=1+u+⋯+us−1. We also show that the symmetric polynomial on the right hand side is always Schur positive. Moreover, using the Rational Compositional Shuffle conjecture, we derive a precise formula expressing this polynomial in terms of Parking Functions in the md5=3ed99bf7ae48efaa5340eedea6950942" title="Click to view the MathML source">km×kn lattice rectangle.

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