Zhang Kai-Chun, Chen Xiao-Xing, Sheng Chang-Jian, Ooi Kelvin J A, Ang Lay Kee, Yuan Xue-Song
Opt Express. 2017 Aug 21;25(17):20477-20485. doi: 10.1364/OE.25.020477.
The terahertz band is an increasingly important spectrum in a wide range of applications from bioimaging and medical diagnostics to security and wireless communications. We propose a tunable terahertz coherent radiation source based on graphene plasmon-induced transition radiation. The transition radiation in terahertz regime arises from the graphene plasmons, which are excited by a normally incident bunched electron beam. We analyze the field-intensities and spectral-angular distributions of the transition radiation with respect to Fermi energy, substrate dielectric permittivity, and electron bunch energy for both the coherent and incoherent radiation. The effect of electron bunching on the radiation pattern is discussed. The mechanism of plasmon frequency-selective transition radiation is discovered.
太赫兹频段在从生物成像、医学诊断到安全和无线通信等广泛应用中是一个日益重要的频谱。我们提出了一种基于石墨烯等离子体激元诱导跃迁辐射的可调谐太赫兹相干辐射源。太赫兹波段的跃迁辐射源于石墨烯等离子体激元,它由垂直入射的聚束电子束激发。我们分析了相干辐射和非相干辐射情况下,跃迁辐射的场强和光谱角分布与费米能量、衬底介电常数和电子束能量的关系。讨论了电子聚束对辐射方向图的影响。发现了等离子体激元频率选择性跃迁辐射的机制。