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首页> 外文期刊>The Journal of Chemical Physics >CNOT gate operation on a photogenerated molecular electron spin-qubit pair
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CNOT gate operation on a photogenerated molecular electron spin-qubit pair

机译:光生分子电子旋转QUB对上的CNOT栅极操作

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Implementation of the two-qubit controlled-NOT (CNOT) gate is necessary to develop a complete set of universal gates for quantum computing. Here, we demonstrate that a photogenerated radical (spin qubit) pair within a covalent donor-chromophore-acceptor molecule can be used to successfully execute a CNOT gate with high fidelity. The donor is tetrathiafulvalene (TTF), the chromophore is 8-aminonaphthalene-1,8-dicarboximide (ANI), and the acceptor is pyromellitimide (PI). Selective photoexcitation of ANI with a 416 nm laser pulse results in subnanosecond formation of the TTF center dot+-ANI-PI center dot- radical (spin qubit) pair at 85 K having a 1.8 mu s phase memory time. This is sufficiently long to execute a CNOT gate using a sequence of five microwave pulses followed by a sequence of two pulses that read out all the elements of the density matrix. Comparing these data to a simulation of the data that assumes ideal conditions results in a fidelity of 0.97 for the execution of the CNOT gate. These results show that photogenerated molecular spin qubit pairs can be used to execute this essential quantum gate at modest temperatures, which affords the possibility that chemical synthesis can be used to develop structures to execute more complex quantum logic operations using electron spins.
机译:需要实现两个Qubbit控制 - 不是(CNOT)门,以开发一组用于量子计算的全套通用栅极。这里,我们证明了共价供体 - 色团受体分子内的光静脉基团(SpinQubit)对可用于成功地执行具有高保真的CNOT栅极。供体是四硫甲戊烯(TTF),发色团是8-氨基萘-1,8-二羧酰亚胺(ANI),并且受体是吡罗米胺(PI)。具有416nm激光脉冲的ANI的选择性光刺射导致TTF中心点+ -ANI-PI-PI中心点的亚癸磺(SpinQubit)对,在85 k处具有1.8μs的相位存储时间。这足以使用五个微波脉冲的序列执行CNOT栅极,然后执行两个脉冲的序列,该脉冲读出密度矩阵的所有元件。将这些数据与假设理想条件的数据进行比较,以便执行CNOT门的保真度为0.97。这些结果表明,光发射的分子旋转量子对对可用于在适度的温度下执行该基本量子栅极,这提供了可以使用化学合成的可能性来开发使用电子旋转来执行更复杂的量子逻辑操作的结构。

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