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相关论文: Shifts and widths of p-wave confinement induced re…

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We develop and analyze a theoretical model which yields the shifts and widths of Feshbach resonances in an atomic waveguide. It is based on a multichannel approach for confinement-induced resonances (CIRs) and atomic transitions in the…

原子物理 · 物理学 2015-06-11 Shahpoor Saeidian , Vladimir S. Melezhik , Peter Schmelcher

We develop a grid method for multi-channel scattering of atoms in a waveguide with harmonic confinement. This approach is employed to extensively analyze the transverse excitations and deexcitations as well as resonant scattering processes.…

原子物理 · 物理学 2009-11-13 Shahpoor Saeidian , Vladimir S. Melezhik , Peter Schmelcher

We study the confinement-induced resonance (CIR) of $^{173}$Yb atoms near an orbital Feshbach resonance in a quasi-one-dimensional tube with transversal anisotropy. By solving the two-body scattering problem, we obtain the location of CIR…

量子气体 · 物理学 2018-11-21 Qing Ji , Ren Zhang , Xiang Zhang , Wei Zhang

We study the near-threshold molecular and collisional physics of a strong $^{40}$K p-wave Feshbach resonance through a combination of measurements, numerical calculations, and modeling. Dimer spectroscopy employs both radio-frequency…

Feshbach resonances of arbitrary width are typically described in terms of two-channel models. Within these models, one usually considers a single dressed resonance, with the option to extend the analysis by including resonant open-channel…

量子气体 · 物理学 2023-06-21 Denise Ahmed-Braun , Paul Julienne , Servaas Kokkelmans

Using a two-channel model, we investigate theoretically the binding energy of confinement-induced Feshbach molecules in two- and one-dimensional ultracold atomic systems, near a Feshbach resonance. We show that the two-channel prediction…

量子气体 · 物理学 2012-10-09 Shi-Guo Peng , Hui Hu , Xia-Ji Liu , Kaijun Jiang

We have investigated the quantum dynamics of two ultracold bosons inside an atomic waveguide for two different confinement geometries (cigar-shaped and toroidal waveguides) by quantum Monte Carlo methods. For quasi-1D gases, the confining…

原子物理 · 物理学 2016-11-01 Sajad Azizi , Shahpoor Saeidian

Low dimensional behavior of two ultra-cold atoms trapped in two-and one-dimensional waveguides is investigated in the vicinity of a magnetic Feshbach resonance. A quantitative two-channel model for the Feshbach mechanism is used allowing an…

量子气体 · 物理学 2015-04-17 Tom Kristensen , Ludovic Pricoupenko

We theoretically study the width of the s-wave confinement-induced resonance (CIR) in quasi-one-dimensional atomic gases under tunable transversely anisotropic confinement. We find that the width of the CIR can be tuned by varying the…

量子气体 · 物理学 2017-11-27 Fang Qin , Jian-Song Pan , Su Wang , Guang-Can Guo

Confinement induced resonance (CIR) is a useful tool for the control of the interaction between ultracold atoms. In most cases the CIR occurs when the characteristic length atrap of the confinement is similar as the scattering length as of…

原子物理 · 物理学 2019-10-11 Dawu Xiao , Ren Zhang , Peng Zhang

We develop a theoretical framework for the quasi-low-dimensional confinement-induced resonances (CIRs) of particles with the arbitrary three-dimensional two-body interactions, based on the Huang-Yang pseudopotential and the treatment of…

量子气体 · 物理学 2014-10-29 Tao Shi , Su Yi

We study confined scattering of a quantum particle by two centers fixed on the longitudinal axis of a harmonic waveguide-like trap. The conditions of confinement-induced resonances (CIRs) appearing in these systems, when scattering cross…

量子物理 · 物理学 2019-03-27 Sara Shadmehri , Vladimir S. Melezhik

We investigate the confinement induced resonance in spin-orbit coupled cold atoms with Raman coupling. We find that the quasi-bound levels induced by the spin-orbit coupling and Raman coupling result in the Feshbach-type resonances. For…

量子气体 · 物理学 2014-05-29 Yi-Cai Zhang , Shu-Wei Song , Wu-Ming Liu

We study the use of an optical Feshbach resonance to modify the p-wave interaction between ultracold polarized Yb-171 spin-1/2 fermions. A laser exciting two colliding atoms to the 1S_0 + 3P_1 channel can be detuned near a purely-long-range…

原子物理 · 物理学 2015-03-17 Krittika Goyal , Iris Reichenbach , Ivan Deutsch

Using radio-frequency (RF) spectroscopy, we measure the $p$-wave contacts in a Fermi gas of $^6$Li atoms near the $p$-wave Feshbach resonance. The RF spectrum exhibits clear asymptotic behavior, characterized by $\tilde{\omega}^{-1/2}$ and…

量子气体 · 物理学 2025-02-18 Kenta Nagase , Soki Oshima , Hikaru Takahashi , Takashi Mukaiyama

We consider a heteronuclear fermionic mixture on the molecular side of an interspecies Feshbach resonance and discuss atom-dimer scattering properties in uniform space and in the presence of an external confining potential, restricting the…

量子气体 · 物理学 2013-05-29 J. Levinsen , T. G. Tiecke , J. T. M. Walraven , D. S. Petrov

We propose to use a two-species Fermi gas with the interspecies s-wave Feshbach resonance to realize p-wave superfluidity in two dimensions. By confining one species of fermions in a two-dimensional plane immersed in the background…

其他凝聚态物理 · 物理学 2009-03-12 Yusuke Nishida

We investigate confinement-induced resonances in a system composed by a tightly trapped ion and a moving atom in a waveguide. We determine the conditions for the appearance of such resonances in a broad region -- from the "long-wavelength"…

原子物理 · 物理学 2016-08-24 Vladimir S. Melezhik , Antonio Negretti

The two-body bound and scattering properties in an one-dimensional harmonic waveguide close to free space magnetic Feshbach resonances are investigated based on the local frame transformation approach within a single partial wave…

量子气体 · 物理学 2016-08-24 Gaoren Wang , Panagiotis Giannakeas , Peter Schmelcher

Employing a short-range two-channel description we derive an analytic model of atoms in isotropic and anisotropic harmonic traps at a Feshbach resonance. On this basis we obtain a new parameterization of the energy-dependent scattering…

量子气体 · 物理学 2011-03-09 Philipp-Immanuel Schneider , Yulian V. Vanne , Alejandro Saenz
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