High-momentum distribution with subleading tail in the odd-wave interacting one-dimensional Fermi gases
arXiv:1608.00183 · doi:10.1103/PhysRevA.94.063650
Abstract
We study the odd-wave interacting identical fermions in one-dimension with finite effective range. We show that to fully describe the high-momentum distribution up to , one needs four parameters characterizing the properties when two particles {\it contact} with each other. Two parameters are related to the variation of energy with respect to the odd-wave scattering length and the effective range, respectively, determining the tail and part of tail in . The other two parameters are related to the center-of-mass motion of the system, respectively determining the tail and the other part of tail. We point out that the unusual tail, which has not been discovered before in atomic systems, is an intrinsic component to complete the general form of and also realistically detectable under certain experimental conditions. Various other universal relations are also derived in terms of those contact parameters, and finally the results are confirmed through the exact solution of a two-body problem.
7 pages, 5 figures; accepted version by Phys. Rev. A
References in corpus (11)
- Generalized Virial Theorem and Pressure Relation for a strongly correlated Fermi gas
- Exact Relations for a Strongly-interacting Fermi Gas from the Operator Product Expansion
- Verification of universal relations in a strongly interacting Fermi gas
- Universal Properties of the Ultra-Cold Fermi Gas
- Measurement of the Homogeneous Contact of a Unitary Fermi gas
- Precise determination of the structure factor and contact in a unitary Fermi gas
- Exact Relations for a Strongly-interacting Fermi Gas near a Feshbach Resonance
- Resonant Scattering of Ultracold Atoms in Low Dimensions
- Three-component Ultracold Fermi Gases with Spin-Orbit Coupling
- P-Wave Contact Tensor -- Universal Properties of Axisymmetry-Broken P-Wave Fermi Gases
- Universal relations of strongly interacting Fermi gases with multiple scattering channels
Cited by in corpus (19)
- Field-theoretical aspects of one-dimensional Bose and Fermi gases with contact interactions
- Comparative study of one-dimensional Bose and Fermi gases with contact interactions from the viewpoint of universal relations for correlation functions
- Stretching p-wave molecules by transverse confinements
- Sigature of the universal super Efimov Effect: three-body contact in two dimensional Fermi gases
- Unitary -wave Fermi gas in one dimension
- Center-of-mass-momentum-dependent interaction between ultracold atoms
- Emergent s-wave interactions between identical fermions in quasi-one-dimensional geometries
- Ground-state properties of dilute spinless fermions in fractional dimensions
- P-wave contacts of quantum gases in quasi-one-dimensional and quasi-two-dimensional traps
- Universal relations for spin-orbit-coupled Fermi gases in two and three dimensions
- Transport in p-wave interacting Fermi gases
- Universal relations for hybridized - and -wave interactions from spin-orbital coupling
- Thermodynamic contacts and breathing mode physics of 1D p-wave Fermi gases in the high temperature limit
- Viscous Flow in a 1D Spin-Polarized Fermi Gas: the Role of Integrability on Viscosity
- Large-momentun tail of one-dimensional Fermi gases with spin-orbit coupling
- One-dimensional two-component fermions with contact even-wave repulsion and SU(2) breaking near-resonant odd-wave attraction
- Non-Hermitian -wave superfluid and effects of the inelastic three-body loss in a one-dimensional spin-polarized Fermi gas
- Radio-Frequency Spectroscopy and the Dimensional Crossover in Interacting Spin-Polarized Fermi Gases
- Boson-Anyon-Fermion Mapping and Anyon Construction in One Dimension