Publication | Open Access
Exact Results for Spin Dynamics and Fractionalization in the Kitaev Model
375
Citations
16
References
2007
Year
EngineeringSpin SystemsMajorana Fermion ExcitationsKitaev ModelTopological Quantum StateMathematical Statistical PhysicQuantum ComputingSpin DynamicsQuantum EntanglementQuantum MatterFractional DynamicQuantum ScienceMajorana FermionPhysicsQuantum Field TheoryTopological PhaseTopological ExcitationsFractional-order SystemNatural SciencesSpin Correlation FunctionsApplied PhysicsDisordered Quantum SystemExact Results
We present certain exact analytical results for dynamical spin correlation functions in the Kitaev Model. It is the first result of its kind in nontrivial quantum spin models. The result is also novel: in spite of the presence of gapless propagating Majorana fermion excitations, dynamical two spin correlation functions are identically zero beyond nearest neighbor separation. This shows existence of a gapless but short range spin liquid. An unusual, all energy scale fractionalization of a spin-flip quanta, into two infinitely massive pi fluxes and a dynamical Majorana fermion, is shown to occur. As the Kitaev Model exemplifies topological quantum computation, our result presents new insights into qubit dynamics and generation of topological excitations.
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