You J Q, Tsai J S, Nori Franco
Frontier Research System, The Institute of Physical and Chemical Research (RIKEN), Wako-shi 351-0198, Japan.
Phys Rev Lett. 2002 Nov 4;89(19):197902. doi: 10.1103/PhysRevLett.89.197902. Epub 2002 Oct 21.
A goal of quantum information technology is to control the quantum state of a system, including its preparation, manipulation, and measurement. However, scalability to many qubits and controlled con-nectivity between any selected qubits are two of the major stumbling blocks to achieve quantum com-puting (QC). Here we propose an experimental method, using Josephson charge qubits, to efficiently solve these two central problems. The proposed QC architecture is scalable since any two charge qubits can be effectively coupled by an experimentally accessible inductance. More importantly, we formulate an efficient and realizable QC scheme that requires only one (instead of two or more) two-bit operation to implement conditional gates.
量子信息技术的一个目标是控制系统的量子态,包括其制备、操纵和测量。然而,扩展到多个量子比特以及任意选定量子比特之间的可控连接性是实现量子计算(QC)的两个主要绊脚石。在此,我们提出一种使用约瑟夫森电荷量子比特的实验方法,以有效解决这两个核心问题。所提出的量子计算架构具有可扩展性,因为任意两个电荷量子比特可以通过实验可及的电感有效地耦合。更重要的是,我们制定了一种高效且可实现的量子计算方案,该方案仅需一次(而非两次或更多次)两位操作即可实现条件门。