Kirk W Madison, Kai Bongs, Visit Amazon's Lincoln D Carr's Annual Review of Cold Atoms and Molecules: Volume 3 PDF

By Kirk W Madison, Kai Bongs, Visit Amazon's Lincoln D Carr Page, search results, Learn about Author Central, Lincoln D Carr, , Ana Maria Rey, Hui Zhai

ISBN-10: 9814667730

ISBN-13: 9789814667739

The purpose of this booklet is to comprise overview articles describing the newest theoretical and experimental advancements within the box of chilly atoms and molecules. Our desire is this sequence will advertise examine by way of either highlighting contemporary breakthroughs and by way of outlining one of the most promising learn instructions within the field.

Readership: examine scientists together with graduate scholars and higher point undergraduate scholars.

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Extra info for Annual Review of Cold Atoms and Molecules: Volume 3

Sample text

3. Pseudogap The pseudogap regime is often synonymous with “pairing above Tc ” in the cold-atom literature. However, such a scenario is trivially achieved in a classical gas of diatomic molecules, where the gap in the spectrum corresponds to the dimer binding energy. 83 Indeed, it is not a priori obvious that such a phenomenon can be replicated with an attractive Fermi gas: a large attraction will surely lead to a pronounced pairing gap above Tc , but it will also destroy the Fermi surface. It is therefore reasonable to assume that any pseudogap regime must have µ > 0 in addition to pairing, as schematically depicted in Fig.

Three atoms bind to a trimer in the shaded regions. l 0 = 1/ m ↑ ω↑ is the confinement ∗ length of the heavy atoms, while R = −reff /2 > 0 is a length scale parameterizing the width of the Feshbach resonance. The figure is taken from Ref. 54. March 4, 2015 6:20 Annual Review of Cold Atoms and Molecules Volume 3 Strongly Interacting Two-Dimensional Fermi Gases 9in x 6in b2033-ch01 page 27 27 tends to suppress the attraction mediated by the light atom, and introduces an additional complication in the quest to obtain these few-body states.

The thin dotted lines are the results in the 2D limit, µ = ε F − εb /2 and = 2εb ε F . In (a), the term from two-body binding, −εb /2, has been subtracted from µ in order to expose the many-body corrections. The data is taken from Ref. 68. substantially different when E ωz . The pairing order parameter is also modified by the presence of ωz , with being increased in the BCS regime with increasing ε F /ωz , as seen in Fig. 10 (b). This suggests that pairing is enhanced by perturbing away from the 2D limit and this therefore impacts the critical temperature for superfluidity (see Sec.

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Annual Review of Cold Atoms and Molecules: Volume 3 by Kirk W Madison, Kai Bongs, Visit Amazon's Lincoln D Carr Page, search results, Learn about Author Central, Lincoln D Carr, , Ana Maria Rey, Hui Zhai


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