Title :
Microscopic atom traps on an evanescent-wave mirror
Author :
Shevchenko, Andrey ; Jaakkola, Anttoni ; Hakola, A. ; Kaivola, M. ; Lindvall, T. ; Tittonen, I.
Author_Institution :
Dept. of Eng. Phys. & Math., Helsinki Univ. of Technol., Finland
Abstract :
An alternative technique is proposed to create microscopic atom traps loaded with atoms from a gravito-optical surface trap (GOT), which is composed of an evanescent-wave mirror and a vertically aligned hollow laser beam. Our trap design is based on the use of current-carrying transparent conductors and transparent permanent magnets fabricated on the surface of a glass prism in the form of an internal structure of a refractive-index-matched thin dielectric film. The conductors can be fabricated of indium tin oxide (ITO) and the magnets of yttrium iron garnet (YIG). Different kinds of traps may be envisaged: i) spin-independent electro-optical ii) magneto-optical for either high- or low-field seeking atoms, and iii) purely magnetic for atoms in the low-field seeking states. In case iii), the magnetic-field minimum is located far enough from the film surface to make the contribution of the optical field negligible.
Keywords :
atom optics; electro-optical devices; garnets; indium compounds; magnetic traps; magneto-optical devices; mirrors; radiation pressure; InSnO; YFe5O12; YIG; current-carrying transparent conductors; electro-optical trap; evanescent-wave mirror; glass prism; gravito-optical surface trap; high-seeking atoms; indium tin oxide conductor; low-field seeking atoms; magnetic trap; magneto-optical trap; microscopic atom traps; permanent magnets; refractive-index-matched thin dielectric film; vertically aligned hollow laser beam; yttrium iron garnet magnet; Atom lasers; Atomic beams; Conductive films; Indium tin oxide; Laser beams; Microscopy; Mirrors; Optical films; Optical refraction; Vertical cavity surface emitting lasers;
Conference_Titel :
Quantum Electronics Conference, 2003. EQEC '03. European
Print_ISBN :
0-7803-7733-8
DOI :
10.1109/EQEC.2003.1314165