Jaewan Kim

Multi-dimensional trio coherent states

Hyo Seok Yi [1], Ba An Nguyen [2], Jaewan Kim [2]

Abstract

We introduce a novel class of higher-order, three-mode states called K-dimensional trio coherent states. We study their mathematical properties and prove that they form a complete set in a truncated Fock space. We also study their physical content by explicitly showing that they exhibit nonclassical features such as oscillatory number distribution, sub-poissonian statistics, Cauchy-Schwarz inequality violation and phase-space quantum interferences. Finally, we propose an experimental scheme to realize the state with K=2 in the quantized vibronic motion of a trapped ion.

Improved scheme for generation of vibrational trio coherent states of a trapped ion

Hyo Seok Yi [1], Ba An Nguyen [2], Jaewan Kim [2]

Abstract

We improve a previously proposed scheme (Phys. Rev. A 66 (2002) 065401) for generating vibrational trio coherent states of a trapped ion. The improved version is shown to gain a double advantage: (i) it uses only five, instead of eight, lasers and (ii) the generation process can be made remarkably faster.

Generation of two-mode nonclassical motional states and a Fredkin gate operation in a two-dimensional ion trap

Xu-Bo Zou [1], Jaewan Kim [1], Hai-Woong Lee [1]

Abstract

We present an efficient scheme to generate two-mode SU(2) macroscopic quantum superposition (Schrödinger cat) states, entangled number states and entangled coherent states for the vibrational motion of an ion trapped in a two-dimensional harmonic potential well. We also show that the same scheme can be used to realize a Fredkin gate operation.