2 research outputs found
Tkachenko modes and quantum melting of Josephson junction type of vortex array in rotating Bose-Einstein condensate
Using path integral formalism, we show that the Abrikosov-Tkachenko vortex
lattice may equivalently be understood as an array of Josephson junctions. The
Tkachenko modes are found to be basically equivalent to the low energy
excitations (Goldstone modes) of an ordered state. The calculated frequencies
are in very good agreement with recent experimental data. Calculations of the
fluctuations of the relative displacements of the vortices show that vortex
melting is a result of quantum fluctuations around the ordered state due to the
low energy excitations (Tkachenko modes)and occurs when the ratio of the
kinectic energy to the potential energy of the vortex lattice is 0.001.Comment: revised paper 11 pages with 2 figures, all in Pdf forma
Analogue Gravity
Analogue models of (and for) gravity have a long and distinguished history dating back to the earliest years of general relativity. In this review article we will discuss the history, aims, results, and future prospects for the various analogue models. We start the discussion
by presenting a particularly simple example of an analogue model, before exploring the rich history and complex tapestry of models discussed in the literature. The last decade in particular
has seen a remarkable and sustained development of analogue gravity ideas, leading to some hundreds of published articles, a workshop, two books, and this review article. Future prospects for the analogue gravity programme also look promising, both on the experimental
front (where technology is rapidly advancing) and on the theoretical front (where variants of analogue models can be used as a springboard for radical attacks on the problem of quantum
gravity)