IEEE Trans Nanobioscience. 2013 Sep;12(3):222-7. doi: 10.1109/TNB.2013.2264316. Epub 2013 Aug 15.
A generation of optical capsules and tweezers within a modified optical add-drop filter known as PANDA ring resonator with a new concept is proposed. By using dark and bright solitons, the orthogonal tweezers can be formed within the system and observed simultaneously at the output ports. Under the resonant condition, the optical capsules and tweezers generated by dark and bright soliton pair corresponding to the left-hand and right-hand rotating solitons (tweezers) can be generated. When a soliton is interacted by an object, an angular momentum of either bright or dark tweezers is imparted to the object, in which two possible spin states known as tweezer spins are exhibited. Furthermore, an array of molecular capsules and spins, i.e., trapped molecules can be generated and detected by using the proposed system, which can be used to form large scale tweezer or capsule spins. In application, the trapped molecules can be moved and rotated securely to the required destinations, which can be useful for many applications, especially, in medical diagnosis, therapy and surgery.
提出了一种在改进型光学上下滤波器(称为 PANDA 环形谐振器)中集成一代光学胶囊和镊子的新概念。通过使用暗和亮孤子,可以在系统内形成正交镊子,并在输出端口同时观察到。在谐振条件下,可以产生对应于左手和右手旋转孤子(镊子)的暗和亮孤子对产生的光学胶囊和镊子。当孤子与物体相互作用时,明亮或黑暗镊子的角动量被赋予物体,其中表现出两种可能的自旋状态,称为镊子自旋。此外,可以使用所提出的系统生成和检测分子胶囊和自旋的阵列,即被捕获的分子,这可以用于形成大规模的镊子或胶囊自旋。在应用中,可以将捕获的分子安全地移动和旋转到所需的目的地,这在许多应用中非常有用,特别是在医疗诊断、治疗和手术中。