We propose a versatile optical ring lattice suitable for trapping cold and quantum degenerate atomic samples. We demonstrate the realisation of intensity patterns from pairs of Laguerre-Gauss (exp(i-ө) modes with different - indices. These patterns can be rotated by introducing a frequency shift between the modes. We can generate bright ring lattices for trapping atoms in red-detuned light, and dark ring lattices suitable for trapping atoms with minimal heating in the optical vortices of blue-detuned light. The lattice sites can be joined to form a uniform ring trap, making it ideal for studying persistent currents and the Mott insulator transition in a ring geometry
New counter propagating geometries are presented for localizing ultracold atoms in the dark regions ...
New counter propagating geometries are presented for localizing ultracold atoms in the dark regions ...
We propose a new geometry of optical lattice for cold atoms, namely a lattice made of a 1D stack of ...
We propose a versatile optical ring lattice suitable for trapping cold and quantum degenerate atomic...
We propose a versatile optical ring lattice suitable for trapping cold and quantum degenerate atomic...
We propose a versatile optical ring lattice suitable for trapping cold and quantum degenerate atomic...
We propose a versatile optical ring lattice suitable for trapping cold and quantum degenerate atomic...
We propose a versatile optical ring lattice suitable for trapping cold and quantum degenerate atomic...
We propose a versatile optical ring lattice suitable for trapping cold and quantum degenerate atomic...
We demonstrate the generation of highly adaptable and reproducible dark optical ring lattices, which...
We demonstrate the generation of highly adaptable and reproducible dark optical ring lattices, which...
4 figures, 10 pagesWe propose a new kind of toroidal trap, designed for ultracold atoms. It relies o...
We propose a toroidal trap designed for ultracold atoms. It relies on a combination of a magnetic tr...
New counter propagating geometries are presented for localizing ultracold atoms in the dark regions ...
We demonstrate the generation of highly adaptable and reproducible dark optical ring lattices, which...
New counter propagating geometries are presented for localizing ultracold atoms in the dark regions ...
New counter propagating geometries are presented for localizing ultracold atoms in the dark regions ...
We propose a new geometry of optical lattice for cold atoms, namely a lattice made of a 1D stack of ...
We propose a versatile optical ring lattice suitable for trapping cold and quantum degenerate atomic...
We propose a versatile optical ring lattice suitable for trapping cold and quantum degenerate atomic...
We propose a versatile optical ring lattice suitable for trapping cold and quantum degenerate atomic...
We propose a versatile optical ring lattice suitable for trapping cold and quantum degenerate atomic...
We propose a versatile optical ring lattice suitable for trapping cold and quantum degenerate atomic...
We propose a versatile optical ring lattice suitable for trapping cold and quantum degenerate atomic...
We demonstrate the generation of highly adaptable and reproducible dark optical ring lattices, which...
We demonstrate the generation of highly adaptable and reproducible dark optical ring lattices, which...
4 figures, 10 pagesWe propose a new kind of toroidal trap, designed for ultracold atoms. It relies o...
We propose a toroidal trap designed for ultracold atoms. It relies on a combination of a magnetic tr...
New counter propagating geometries are presented for localizing ultracold atoms in the dark regions ...
We demonstrate the generation of highly adaptable and reproducible dark optical ring lattices, which...
New counter propagating geometries are presented for localizing ultracold atoms in the dark regions ...
New counter propagating geometries are presented for localizing ultracold atoms in the dark regions ...
We propose a new geometry of optical lattice for cold atoms, namely a lattice made of a 1D stack of ...