This paper proposes a scheme for implementing the adiabatic quantum search algorithm of different marked items in an unsorted list of N items with atoms in a cavity driven by lasers. N identical three-level atoms are ...This paper proposes a scheme for implementing the adiabatic quantum search algorithm of different marked items in an unsorted list of N items with atoms in a cavity driven by lasers. N identical three-level atoms are trapped in a single-mode cavity. Each atom is driven by a set of three pulsed laser fields. In each atom, the same level represents a database entry. Two of the atoms are marked differently. The marked atom has an energy gap between its two ground states. The two different marked states can be sought out respectively starting from an initial entangled state by controlling the ratio of three pulse amplitudes. Moreover, the mechanism, based on adiabatic passage, constitutes a decoherence-free method in the sense that spontaneous emission and cavity damping are avoided since the dynamics follows the dark state. Furthermore, this paper extends the algorithm with m(m〉2) atoms marked in an ideal situation. Any different marked state can be sought out.展开更多
目前,极紫外光被认为是制备特征尺寸小于7 nm芯片所必备的光源,激光轰击液态金属锡靶是其产生的主要方式之一.采用体积分数(volurne of fluid,VOF)方法建立了激光轰击金属锡液面产生溅射的模型,并对液料溅射和雾化的演化过程进行了数值...目前,极紫外光被认为是制备特征尺寸小于7 nm芯片所必备的光源,激光轰击液态金属锡靶是其产生的主要方式之一.采用体积分数(volurne of fluid,VOF)方法建立了激光轰击金属锡液面产生溅射的模型,并对液料溅射和雾化的演化过程进行了数值模拟,研究了冠状水花的产生机制以及雾化时的流场变化.在此基础上,进一步研究了金属液态锡在不同的能量、光斑直径和脉宽的激光轰击下溅射产生的冠的宽度和高度随时间演化情况.研究表明:在激光辐照产生的高压等离子体的高速冲击下,液膜经历快速运动、冠状射流和雾化3个阶段,液膜生长主要原因是惯性力作用;液膜上下两端存在较大的速度梯度是射流形状发生变化的主要原因;冠边缘处雾化现象的产生是由Rayleigh-Taylor和Plateau-Rayleigh不稳定性共同作用的结果.在激光轰击下,冠的高度和宽度随激光能量增加而增大,但随着时间推移,冠宽和冠高的增长速率逐渐减小;激光光斑和脉宽对冠宽及冠高的影响较为复杂,在前期影响较小,在后期冠宽及冠高随它们数值增加而减小.展开更多
基金Project supported by the National Natural Science Foundation of China (Grant Nos 10574022 and 10575022)the Funds of Educational Committee of Fujian Province,China (Grant No JB07043)
文摘This paper proposes a scheme for implementing the adiabatic quantum search algorithm of different marked items in an unsorted list of N items with atoms in a cavity driven by lasers. N identical three-level atoms are trapped in a single-mode cavity. Each atom is driven by a set of three pulsed laser fields. In each atom, the same level represents a database entry. Two of the atoms are marked differently. The marked atom has an energy gap between its two ground states. The two different marked states can be sought out respectively starting from an initial entangled state by controlling the ratio of three pulse amplitudes. Moreover, the mechanism, based on adiabatic passage, constitutes a decoherence-free method in the sense that spontaneous emission and cavity damping are avoided since the dynamics follows the dark state. Furthermore, this paper extends the algorithm with m(m〉2) atoms marked in an ideal situation. Any different marked state can be sought out.
文摘目前,极紫外光被认为是制备特征尺寸小于7 nm芯片所必备的光源,激光轰击液态金属锡靶是其产生的主要方式之一.采用体积分数(volurne of fluid,VOF)方法建立了激光轰击金属锡液面产生溅射的模型,并对液料溅射和雾化的演化过程进行了数值模拟,研究了冠状水花的产生机制以及雾化时的流场变化.在此基础上,进一步研究了金属液态锡在不同的能量、光斑直径和脉宽的激光轰击下溅射产生的冠的宽度和高度随时间演化情况.研究表明:在激光辐照产生的高压等离子体的高速冲击下,液膜经历快速运动、冠状射流和雾化3个阶段,液膜生长主要原因是惯性力作用;液膜上下两端存在较大的速度梯度是射流形状发生变化的主要原因;冠边缘处雾化现象的产生是由Rayleigh-Taylor和Plateau-Rayleigh不稳定性共同作用的结果.在激光轰击下,冠的高度和宽度随激光能量增加而增大,但随着时间推移,冠宽和冠高的增长速率逐渐减小;激光光斑和脉宽对冠宽及冠高的影响较为复杂,在前期影响较小,在后期冠宽及冠高随它们数值增加而减小.