Statistical signatures of states orthogonal to the Fock-state ladder of composite bosons
arXiv:1609.04796 · doi:10.1103/PhysRevA.94.053624
Abstract
The theory of composite bosons (cobosons) made of two fermions [Phys. Rev. A 71, 034306 (2005), Phys. Rev. Lett. 109, 260403 (2012)] converges to ordinary structureless bosons in the limit of infinitely strong entanglement between the fermionic constituents. For finite entanglement, the annihilation operator of a composite boson couples the -coboson Fock-state not only to the -coboson state -- as for ordinary bosons --, but also to a component which is orthogonal to the Fock-state ladder of cobosons. Coupling with states orthogonal to the Fock ladder arises also in dynamical processes of cobosons. Here, with a Gedanken-experiment involving both mode-splitting and collective Hong-Ou-Mandel-like interference, we derive the characteristic physical signature of the states orthogonal to the Fock ladder generated in the splitting process. This allows to extract microscopic properties of many-fermion-wave functions from the collective coboson behavior. We show that consecutive beam-splitter dynamics increases the deviation from the ideal bosonic behavior pattern, which opens up a rigorous approach to the falsification of coboson theory.
13 pages, 7 figues
References in corpus (12)
- Camparison of the Hanbury Brown-Twiss effect for bosons and fermions
- Two Fermions in a double well: Exploring a fundamental building block of the Hubbard model
- An atomic Hong-Ou-Mandel experiment
- Many-particle interference beyond many-boson and many-fermion statistics
- Four-Photon (In)Distinguishability Transition
- Bosonic behavior of entangled fermions
- Observation of interference between two molecular Bose-Einstein condensates
- Effects of fermion exchanges on the polarization of exciton condensates
- Collective interference of composite two-fermion bosons
- Energy dependence of the entanglement entropy of composite boson (quasiboson) systems
- Composite-boson approach to molecular Bose-Einstein condensates in mixtures of ultracold Fermi gases
- Influence of the Pauli exclusion principle on scattering properties of cobosons