Publication | Open Access
Spin-Injection Spectroscopy of a Spin-Orbit Coupled Fermi Gas
890
Citations
29
References
2012
Year
EngineeringMagnetic ResonanceTopological Quantum StateSpin DynamicSpin PhenomenonMagnetismQuantum MaterialsTopological PhasesQuantum MatterAtomic Fermi GasQuantum ScienceMajorana FermionPhysicsSpin-injection SpectroscopySpin-orbit CouplingTopological PhaseQuantum MagnetismSpintronicsNatural SciencesCondensed Matter PhysicsApplied Physics
The coupling of the spin of electrons to their motional state lies at the heart of recently discovered topological phases of matter. Here we create and detect spin-orbit coupling in an atomic Fermi gas, a highly controllable form of quantum degenerate matter. We directly reveal the spin-orbit gap via spin-injection spectroscopy, which characterizes the energy-momentum dispersion and spin composition of the quantum states. For energies within the spin-orbit gap, the system acts as a spin diode. We also create a spin-orbit coupled lattice and probe its spinful band structure, which features additional spin gaps and a fully gapped spectrum. In the presence of s-wave interactions, such systems should display induced p-wave pairing, topological superfluidity, and Majorana edge states.
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