Wan-Li Yang

Preparation of NOON State Induced by Macroscopic Quantum Tunneling in an Ising Chain

Chun-Li Zang [1], Jing Yu [2], Wan-Li Yang [3], Mang Feng [3], Su-Peng Kou [1]

Abstract

In this brief report, we propose a possible way, theoretically and experimentally, to generate a NOON state of the two degenerate ferromagnetic ground states of the Transverse Ising Model. In our scheme we employ the macroscopic quantum tunneling (MQT) effect between the two degenerate ferromagnetic ground states to realize the NOON state. Our calculation about the MQT process is based on a higher-order degenerate perturbation method. After doing a transformation, the MQT process could also be treated as the hopping of individual virtual fermions in the spin chain, which will leads to an analytical description of tunneling process. The experimental feasibility for generating the NOON state is discussed in the setup of linear ion trap.

Implementation of many-qubit Grover search with trapped ultracold ions

Wan-Li Yang [1,2], Hua Wei [1,2], Chang-Yong Chen [3], Mang Feng [1]

Abstract

We propose a potentially practical scheme for realization of an n-qubit (n>2) conditional phase flip (CPF) gate and implementation of Grover search algorithm in the ion-trap system. We demonstrate both analytically and numerically that, our scheme could be achieved efficiently to find a marked state with high fidelity and high success probability. We also show the merits of the proposal that the increase of the ion number can improve the fidelity and the success probability of the CPF gate. The required operations for Grover search are very close to the capabilities of current ion-trap techniques.