Cite this article:
Hai-Xiao Wang, Zi-Heng Liu, Jian-Hua Jiang. Chiral p-wave pairing of ultracold fermionic atoms due to a quadratic band touchingJ. Chin. Phys. B, 2018, 27(2): 027402.
| Hai-Xiao Wang, Zi-Heng Liu, Jian-Hua Jiang. Chiral p-wave pairing of ultracold fermionic atoms due to a quadratic band touchingJ. Chin. Phys. B, 2018, 27(2): 027402. |
Chiral p-wave pairing of ultracold fermionic atoms due to a quadratic band touching
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Abstract
We study the superfuild ground state of ultracold fermions in optical lattices with a quadratic band touching. Examples are a checkerboard lattice around half filling and a kagome lattice above one third filling. Instead of pairing between spin states, here we focus on pairing interactions between different orbital states. We find that our systems have only odd-parity (orbital) pairing instability while the singlet (orbital) pairing instability vanishes thanks to the quadratic band touching. In the mean field level, the ground state is found to be a chiral p-wave pairing superfluid (mixed with finite f-wave pairing order-parameters) which supports Majorana fermions. -
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