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Revealing Majorana Fermion states in a superfluid of cold atoms subject to a harmonic potential
We here explore Majorana Fermion states in an s-wave superfluid of cold atoms
in the presence of spin-orbital coupling and an additional harmonic potential.
The superfluid boundary is induced by a harmonic trap. Two locally separated
Majorana Fermion states are revealed numerically based on the self-consistent
Bogoliubov-de Gennes equations. The local density of states are calculated,
through which the signatures of Majorana excitations may be indicated
experimentally
Topological quantum phase transitions and edge states in spin-orbital coupled Fermi gases
We study the superconducting state in the presence of spin-orbital coupling
and the Zeeman field. It is found that a phase transition from the
Fulde-Ferrell-Larkin-Ovchinnikov state to the topological superconducting state
occurs upon increasing the spin-orbital coupling. The nature of this
topological phase transition and its critical property are investigated
numerically. Physical properties of topological superconducting phase are also
explored. Moreover, the local density of states is calculated, through which
the topological feature may be tested experimentally.Comment: 11 pages, 8 figure
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