Materials Science Group, Indira Gandhi Centre For Atomic Research, Homi Bhabha National Institute, Kalpakkam, 603102, Tamilnadu, India.
Indian Institute of Science Education and Research Kolkata, Mohanpur, 741246, West Bengal, India.
Sci Rep. 2017 Aug 23;7(1):9251. doi: 10.1038/s41598-017-08569-8.
A system of two coupled cavities with N - 1 photons is shown to be dynamically equivalent to an array of N coupled cavities containing one photon. Every transition in the two cavity system has a dual phenomenon in terms of photon transport in the cavity array. This duality is employed to arrive at the required coupling strengths and nonlinearities in the cavity array so that controlled photon transfer is possible between any two cavities. This transfer of photons between two of the cavities in the array is effected without populating the other cavities. The condition for perfect transport enables perfect state transfer between any two cavities in the array. Further, possibility of high fidelity generation of generalized NOON states in two coupled cavities, which are dual to the Bell states of the photon in the cavity array, is established.
两个耦合腔与 N−1 个光子的系统被证明在动力学上等效于包含一个光子的 N 个耦合腔的阵列。在两个腔系统中的每个跃迁在光子在腔阵列中的输运方面都具有双现象。这种对偶性被用来获得腔阵列中的所需耦合强度和非线性,以便可以在任何两个腔之间进行受控的光子转移。光子在阵列中的两个腔之间的这种转移是在不填充其他腔的情况下进行的。完美传输的条件使得可以在阵列中的任何两个腔之间进行完美的状态转移。此外,建立了在两个耦合腔中生成广义 NOON 态的高保真度的可能性,这些态与腔阵列中光子的贝尔态对偶。