Title of article :
Emptiness and depletion formation probability in spin models with inverse square interaction Original Research Article
Author/Authors :
Fabio Franchini، نويسنده , , Manas Kulkarni، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2010
Pages :
21
From page :
320
To page :
340
Abstract :
We calculate the Emptiness Formation Probability (EFP) in the spin-Calogero Model (sCM) and Haldane–Shastry Model (HSM) using their hydrodynamic description. The EFP is the probability that a region of space is completely void of particles in the ground state of a quantum many body system. We calculate this probability in an instanton approach, by considering the more general problem of an arbitrary depletion of particles (DFP). In the limit of large size of depletion region the probability is dominated by a classical configuration in imaginary time that satisfies a set of boundary conditions and the action calculated on such solution gives the EFP/DFP with exponential accuracy. We show that the calculation for sCM can be elegantly performed by representing the gradientless hydrodynamics of spin particles as a sum of two spin-less Calogero collective field theories in auxiliary variables. Interestingly, the result we find for the EFP can be casted in a form reminiscing of spin-charge separation, which should be violated for a non-linear effect such as this. We also highlight the connections between sCM, HSM and image spin-less Calogero model from a EFP/DFP perspective.
Keywords :
Integrable models , Calogero–Sutherland , Collective field theory , Hydrodynamics , EFP , DFP , Haldane–Shastry
Journal title :
Nuclear Physics B
Serial Year :
2010
Journal title :
Nuclear Physics B
Record number :
875726
Link To Document :
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