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REALIZING AN N-TWO-QUBIT QUANTUM LOGIC GATES IN A CAVITY QED WITH NEAREST QUBIT-QUBIT INTERACTION

机译:在具有相邻量子位-量子位相互作用的QED空腔中实现N-二量子位的逻辑门

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摘要

We propose an effective way for realizing a three quantum logic gates (NTCP gate, NTCP-NOT gate and NTQ-NOT gate) of one qubit simultaneously controlling N target qubits based on the qubit-qubit interaction. We use the superconducting qubits in a cavity QED driven by a strong microwave field. In our scheme, the operation time of these gates is independent of the number N of qubits involved in the gate operation. These gates are insensitive to the initial state of the cavity QED and can be used to produce an analogous CNOT gate simultaneously acting on N qubits. The quantum phase gate can be realized in a time (nanosecond-scale) much smaller than decoherence time and dephasing time (microsecond-scale) in cavity QED. Numerical simulation under the influence of the gate operations shows that the scheme could be achieved efficiently within current state-of-the-art technology.
机译:我们提出了一种有效的方法来实现一个量子位的三个量子逻辑门(NTCP门,NTCP-NOT门和NTQ-NOT门),同时基于量子位-量子位相互作用来控制N个目标量子位。我们在由强微波场驱动的腔QED中使用超导量子位。在我们的方案中,这些门的操作时间与门操作中涉及的量子位N的数量无关。这些栅极对腔QED的初始状态不敏感,可用于产生同时作用于N个量子位的类似CNOT栅极。可以在比腔QED中的相干时间和相移时间(微秒级)短得多的时间(纳秒级)中实现量子相位门。在门操作的影响下的数值仿真表明,该方案可以在当前的最新技术中有效地实现。

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