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brief outline

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dual to Kagom (topological models) (Vidal, Dou ot, Pannettier, ... Describing a dual Kagom lattice. with vortexes & anti-vortexes. S. E. Korshunov, Phys. ... – PowerPoint PPT presentation

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Title: brief outline


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brief outline
  • Lattice definitions interest of the problem
  • experiments on JJAs opt. lattice proposal
  • Bose-Hubbard model Quantum Rotor limit
  • Tools to tackle the problem
  • Analytic approaches
  • mean field Ginzburg-Landau
  • strong coupling expansion
  • Numeric MonteCarlo approach
  • effective action as (21)D XY model
  • Magnetic frustration
  • localization of single particle states (AB cages)
  • superconductivity at high tunnelling
  • intermediate phase without disorder !?

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reasons of Interest
  • BH model to study strongly correlated systems
  • JJAs Opt.Latt. are ideal models to study it
    easy tunability!

COUPLINGS SCALAR FRUSTR. VECTORIAL FRUSTR.
OPT. LATT. laser intensity chem. potential rotation/ internal states
JUNCT. ARRAYS grain dimension/ barrier thickness electrostatic gates magnetic fields
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MC unfrustrated results
Modulation in phase localization
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MC full magn. frustr. (2)
Symbols Lt 6, 12, 30 Fillings Lx 6, 12,
18 Fixed ratio Lt2/3 Lx
Dependence on Lt ... not on spatial Lx x Ly !
Gap closed but no spatial correlation
Dyn. crit. exp. z0 gives independence of
correlation lengths ? 1D to 3D crossover
mechanism ?
Unfortunately not big enough system to decide
(frustration make thermalization hard)
Data corresponds to 1/K from 0.6 to 0.75 with
steps 0.025
Scaling on Lt seems to leave a window
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Open questions
Is there an intermediate phase between Mott and
superfluid ?
Which is the correct scaling behaviour of
stiffness and compressibility, since bands of
gauge-link matrix are flat and GLW analysis says
z 0 !?
OUR IDEA single particle correlation lengths may
be independent in time and space and the
intermediate state we observe can be due to a 1d
to 3d crossover due to finite size of the systems
we are considering in simulations
MOREOVER How are results affected by the great
degeneracy of ground states?
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summary
  • T3 (dice) planar, Bravais lattice, no disorder
    but peculiar link matrix with diff. coord.
  • Bose Hubbard Quantum Rotor
  • Mapping into (21)D XY model
  • Magnetic frustration
  • Aharanov Bohm cages for single particles
  • probable pair of pairs superfluidity
  • intermediate strange phase without disorder !?
  • crossover mechanism? new scaling laws?

MR, V. Cataudella, and R.Fazio, Phys Rev. B 73,
144511 (2006) Phys. Rev. B 73, 100502R (2006)
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