Friis Nicolai, Melnikov Alexey A, Kirchmair Gerhard, Briegel Hans J
Institute for Theoretical Physics, University of Innsbruck, Technikerstraße 21a, A-6020 Innsbruck, Austria.
Institute for Quantum Optics and Quantum Information, Austrian Academy of Sciences, Technikerstraße 21a, A-6020 Innsbruck, Austria.
Sci Rep. 2015 Dec 15;5:18036. doi: 10.1038/srep18036.
Coherent controlization, i.e., coherent conditioning of arbitrary single- or multi-qubit operations on the state of one or more control qubits, is an important ingredient for the flexible implementation of many algorithms in quantum computation. This is of particular significance when certain subroutines are changing over time or when they are frequently modified, such as in decision-making algorithms for learning agents. We propose a scheme to realize coherent controlization for any number of superconducting qubits coupled to a microwave resonator. For two and three qubits, we present an explicit construction that is of high relevance for quantum learning agents. We demonstrate the feasibility of our proposal, taking into account loss, dephasing, and the cavity self-Kerr effect.
相干控制,即对一个或多个控制量子比特的状态进行任意单量子比特或多量子比特操作的相干调节,是量子计算中许多算法灵活实现的重要组成部分。当某些子例程随时间变化或经常被修改时,例如在学习智能体的决策算法中,这一点尤为重要。我们提出了一种方案,用于实现与微波谐振器耦合的任意数量超导量子比特的相干控制。对于两个和三个量子比特,我们给出了一个与量子学习智能体高度相关的显式构造。我们考虑了损耗、退相和腔自克尔效应,证明了我们方案的可行性。