量子
量子传感器
物理
光子学
量子信息科学
纳米电子学
光电子学
量子网络
计算机科学
量子计算机
纳米技术
量子纠缠
材料科学
量子力学
作者
G. Ya. Slepyan,Svetlana V. Vlasenko,D. Mogilevtsev
标识
DOI:10.1002/qute.201900120
摘要
Abstract Due to the recent groundbreaking developments of nanotechnologies, it became possible to create intrinsically quantum systems able to serve as high‐directional antennas in terahertz, infrared, and optical ranges. In fact, the quantum antennas, as devices shaping light on the level of single quanta, have already become key elements in nanooptics and nanoelectronics. The quantum antennas are actively researched for possible implementations in quantum communications, quantum imaging and sensing, and energy harvesting. However, the design and optimization of these emitting/receiving devices are still rather undeveloped in comparison with the well‐known methods for conventional radio‐frequency antennas. This review provides a discussion of the recent achievements in the concept of the quantum antenna as an open quantum system emitting via interaction with a photonic reservoir. The review is focused on bridging the gap between quantum antennas and their macroscopic classical analogues. Furthermore, the way of quantum‐antenna implementation is discussed for different configurations, based on such materials as plasmonic metals, carbon nanotubes, and semiconductor quantum dots.
科研通智能强力驱动
Strongly Powered by AbleSci AI