Rashbons: Properties and their significance
arXiv:1108.4872 · doi:10.1088/1367-2630/14/4/043041
Abstract
In presence of a synthetic non-Abelian gauge field that induces a Rashba like spin-orbit interaction, a collection of weakly interacting fermions undergoes a crossover from a BCS ground state to a BEC ground state when the strength of the gauge field is increased [Phys. Rev. B {\bf 84}, 014512 (2011)]. The BEC that is obtained at large gauge coupling strengths is a condensate of tightly bound bosonic fermion-pairs whose properties are solely determined by the Rashba gauge field -- hence called rashbons. In this paper, we conduct a systematic study of the properties of rashbons and their dispersion. This study reveals a new qualitative aspect of the problem of interacting fermions in non-Abelian gauge fields, i.e., that the rashbon state induced by the gauge field for small centre of mass momenta of the fermions ceases to exist when this momentum exceeds a critical value which is of the order of the gauge coupling strength. The study allows us to estimate the transition temperature of the rashbon BEC, and suggests a route to enhance the exponentially small transition temperature of the system with a fixed weak attraction to the order of the Fermi temperature by tuning the strength of the non-Abelian gauge field. The nature of the rashbon dispersion, and in particular the absence of the rashbon states at large momenta, suggests a regime of parameter space where the normal state of the system will be a dynamical mixture of uncondensed rashbons and unpaired helical fermions. Such a state should show many novel features including pseudogap physics.
8 pages, 6 figures
References in corpus (6)
- Theory of ultracold Fermi gases
- Spin-Orbit Coupled Spinor Bose-Einstein Condensates
- A Bose-Einstein Condensate in a Uniform Light-induced Vector Potential
- BCS-BEC crossover induced by a synthetic non-Abelian gauge field
- Scattering Models for Ultracold Atoms
- Trapped fermions in a synthetic non-Abelian gauge field
Cited by in corpus (32)
- Synthetic 3D Spin-Orbit Coupling
- Unconventional states of bosons with synthetic spin-orbit coupling
- Crystallized merons and inverted merons in the condensation of spin-1 Bose gases with spin-orbit coupling
- Dynamical topological phases in quenched spin-orbit coupled degenerate Fermi gas
- Universal Trimers induced by Spin-Orbit Coupling in Ultracold Fermi Gases
- Exotic pairing states in a Fermi gas with three-dimensional spin-orbit coupling
- Flow enhanced pairing and other novel effects in Fermi gases in synthetic gauge fields
- BCS-BEC crossover in three-dimensional Fermi gases with spherical spin-orbit coupling
- Topological superfluid phases of an atomic Fermi gas with in- and out-of-plane Zeeman fields and equal Rashba-Dresselhaus spin-orbit coupling
- Superfluidity and collective modes in Rashba spin-orbit coupled Fermi gases
- Collective excitations across the BCS-BEC crossover induced by a synthetic Rashba spin-orbit coupling
- Ultracold collision in the presence of synthetic spin-orbit coupling
- Short range asymptotic behavior of the wave-functions of interacting spin-half fermionic atoms with spin-orbit coupling: a model study
- Rashba-type Spin-orbit Coupling in Bilayer Bose-Einstein Condensates
- Fulde-Ferrell superfluidity in ultracold Fermi gases with Rashba spin-orbit coupling
- Scattering framework for two particles with isotropic spin-orbit coupling applicable to all energies
- Geometric mass acquisition via quantum metric: an effective band mass theorem for the helicity bands
- Fulde-Ferrell-Larkin-Ovchinnikov state to topological superfluidity transition in bilayer spin-orbit coupled degenerate Fermi gas
- Spectral Gaps of Spin-orbit Coupled Particles in Deformed Traps
- Vortex-lattice formation in a spin-orbit coupled rotating spin-1 condensate
- Induced interactions in the BCS-BEC crossover of two-dimensional Fermi gases with Rashba spin-orbit coupling
- Proposed method to realize the -wave superfluid state using a -wave superfluid Fermi gas with a synthetic spin-orbit interaction
- Rashbon condensation in a Bose gas with Rashba spin-orbit coupling
- Multichannel Molecular State and Rectified Short-range Boundary Condition for Spin-orbit Coupled Ultracold Fermions Near p-wave Resonances
- Magnetic and nematic phases in a Weyl type spin-orbit-coupled spin-1 Bose gas
- Three-boson spectrum in the presence of 1D spin-orbit coupling: Efimov's generalized radial scaling law
- Fluctuation Theory of Rashba Fermi Gases
- Rashbon bound states associated with a spherical spin-orbit coupling in an ultracold Fermi gas with an -wave interaction
- Feshbach Resonance in a Synthetic Non-Abelian Gauge Field
- Energetics and structural properties of two- and three-boson systems in the presence of 1D spin-orbit coupling
- Triplet character of 2D-fermion dimers arising from -wave attraction via spin-orbit coupling and Zeeman splitting
- Atom-dimer and dimer-dimer scatterings in a spin-orbit coupled Fermi gas