Title | Quantum Simulation of Spin Models on an Arbitrary Lattice with Trapped Ions
|
Publication Type | Journal Article |
Year of Publication | 2012 |
Authors | Korenblit, S, Kafri, D, Campbell, WC, Islam, R, Edwards, EE, Gong, Z-X, Lin, G-D, Duan, L, Kim, J, Kim, K, Monroe, C |
Journal | New Journal of Physics |
Volume | 14 |
Issue | 9 |
Pages | 095024 |
Date Published | 2012/09/27 |
Abstract | A collection of trapped atomic ions represents one of the most attractive
platforms for the quantum simulation of interacting spin networks and quantum
magnetism. Spin-dependent optical dipole forces applied to an ion crystal
create long-range effective spin-spin interactions and allow the simulation of
spin Hamiltonians that possess nontrivial phases and dynamics. Here we show how
appropriate design of laser fields can provide for arbitrary multidimensional
spin-spin interaction graphs even for the case of a linear spatial array of
ions. This scheme uses currently existing trap technology and is scalable to
levels where classical methods of simulation are intractable.
|
URL | http://arxiv.org/abs/1201.0776v1 |
DOI | 10.1088/1367-2630/14/9/095024 |
Short Title | New J. Phys. |