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Classification of symmetry fractionalization in gapped spin liquids
In quantum spin liquids, fractional spinon excitations carry half-integer
spins and other fractional quantum numbers of lattice and time-reversal
symmetries. Different patterns of symmetry fractionalization distinguish
different spin liquid phases. In this work, we derive a general constraint on
the symmetry fractionalization of spinons in a gapped spin liquid, realized in
a system with an odd number of spin- per unit cell. In particular, when
applied to kagome/triangular lattices, we obtain a complete classification of
symmetric gapped spin liquids.Comment: 11 pages, 4 figures. v2 published version: minor revisions, and
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New Non-asymptotic Random Channel Coding Theorems
New non-asymptotic random coding theorems (with error probability
and finite block length ) based on Gallager parity check ensemble and
Shannon random code ensemble with a fixed codeword type are established for
discrete input arbitrary output channels. The resulting non-asymptotic
achievability bounds, when combined with non-asymptotic equipartition
properties developed in the paper, can be easily computed. Analytically, these
non-asymptotic achievability bounds are shown to be asymptotically tight up to
the second order of the coding rate as goes to infinity with either
constant or sub-exponentially decreasing . Numerically, they are also
compared favourably, for finite and of practical interest, with
existing non-asymptotic achievability bounds in the literature in general.Comment: 48 pages and 12 figure
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