Rozhkov A V
Institute for Theoretical and Applied Electrodynamics of Russian Academy of Science, ul. Izhorskaya 13, Moscow, 125412, Russia and Moscow Institute of Physics and Technology, Institutskiy per. 9, Dolgoprudny, Moscow Region, 141700, Russia.
Phys Rev Lett. 2014 Mar 14;112(10):106403. doi: 10.1103/PhysRevLett.112.106403. Epub 2014 Mar 10.
It is well known that, generically, one-dimensional interacting fermions cannot be described in terms of a Fermi liquid. Instead, they present a different phenomenology, that of a Tomonaga-Luttinger liquid: the Landau quasiparticles are ill defined, and the fermion occupation number is continuous at the Fermi energy. We demonstrate that suitable fine tuning of the interaction between fermions can stabilize a peculiar state of one-dimensional matter, which is dissimilar to both Tomonaga-Luttinger and Fermi liquids. We propose to call this state a quasi-Fermi liquid. Technically speaking, such a liquid exists only when the fermion interaction is irrelevant (in the renormalization group sense). The quasi-Fermi liquid exhibits the properties of both a Tomonaga-Luttinger liquid and a Fermi liquid. Similar to a Tomonaga-Luttinger liquid, no finite-momentum quasiparticles are supported by the quasi-Fermi liquid; on the other hand, its fermion occupation number demonstrates a finite discontinuity at the Fermi energy, which is a hallmark feature of a Fermi liquid. A possible realization of the quasi-Fermi liquid with the help of cold atoms in an optical trap is discussed.
众所周知,一般来说,一维相互作用费米子无法用费米液体来描述。相反,它们呈现出一种不同的现象学,即汤川-卢廷格液体的现象学:朗道准粒子定义不明确,并且费米子占据数在费米能处是连续的。我们证明,对费米子之间的相互作用进行适当的微调可以稳定一维物质的一种奇特状态,这种状态与汤川-卢廷格液体和费米液体都不同。我们提议将这种状态称为准费米液体。从技术上讲,只有当费米子相互作用无关紧要时(在重整化群意义上),这样的液体才存在。准费米液体展现出汤川-卢廷格液体和费米液体的性质。与汤川-卢廷格液体类似,准费米液体不支持有限动量的准粒子;另一方面,其费米子占据数在费米能处表现出有限的不连续性,这是费米液体的一个标志性特征。本文讨论了借助光学陷阱中的冷原子实现准费米液体的一种可能方式。