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Controlled full adder-subtracter by vibrational computing

机译:通过振动计算控制全加减法

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The implementation of a quantum-controlled full adder-subtractor of two binary digits and of a "carry in" or a "borrow in" is simulated by encoding four qubits in the vibrational eigenstates of a tetra-atomic molecule (trans-VLONO). The laser field of the gate is computed using optimal control theory by treating dynamics in full dimensionality. A controlled qubit enforces the addition or the subtraction. The global unitary transformation that connects the inputs to the outputs is driven by a single laser pulse. This decreases the duration of the operation and allows for a better use of the optical resources and for an improvement of the fidelity (>97%). Initialization and reading out are discussed. The timescale of the sequence initialization, gate and read out is< 100 ps.
机译:通过对四原子分子的振动本征态(trans-VLONO)的四个量子位进行编码,可以模拟两个二进制数字和“进位”或“借位”的量子控制全加减法的实现。闸门的激光场是使用最佳控制理论通过处理全维动力学来计算的。受控的量子位强制加法或减法。将输入连接到输出的全局unit变换由单个激光脉冲驱动。这减少了操作的持续时间,并可以更好地利用光学资源并提高保真度(> 97%)。讨论了初始化和读出。序列初始化,门控和读出的时间范围小于100 ps。

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