Lei Yu-Lu, Zhu Juan-Feng, Zhang Zi-Wen, Yang Ji-Tao, Zhang Feng, Chen Hong-Sheng, Du Chao-Hai
Center for Carbon-based Electronics, School of Electronics, Peking University, Beijing, 100871, China.
State Key Laboratory of Advanced Optical Communication Systems and Networks, School of Electronics, Peking University, Beijing, 100871, China.
Adv Sci (Weinh). 2024 Oct;11(40):e2406089. doi: 10.1002/advs.202406089. Epub 2024 Sep 2.
Chiral light emission plays a key role in sensing, tomography, quantum communication, among others. Whereas, achieving highly pure, tunable chirality emission across a broad spectrum currently presents significant challenges. Free-electron radiation emerges as a promising solution to surpass these barriers, especially in hard-to-reach regimes. Here, chiral free-electron radiation is presented by exploiting the spin-momentum locking (SML) property of spoof surface plasmons (SSPs). When the phase velocity of free electrons matches that of the SSPs, the SSPs can be excited. By implementing wavenumber compensation through perturbations, the confined SSPs are transformed into free-space free-electron radiation. Owing to the law of angular momentum conservation, this process converts the transverse spin angular momentum of SSPs into the longitudinal spin angular momentum of free-electron radiation during the process, producing pure, tunable, and chiral free-electron radiation across a broad spectrum. This method achieves an optimal degree of circular polarization approaching -1. The innovative methodology can be adapted to SML-enabled guided states or silicon photonics platforms, offering new avenues for achieving chiral emission.
手性发光在传感、断层扫描、量子通信等领域发挥着关键作用。然而,目前要在宽光谱范围内实现高纯度、可调谐的手性发射面临重大挑战。自由电子辐射作为一种有前景的解决方案出现,有望突破这些障碍,特别是在难以实现的领域。在此,通过利用类表面等离激元(SSP)的自旋 - 动量锁定(SML)特性来实现手性自由电子辐射。当自由电子的相速度与SSP的相速度匹配时,SSP可以被激发。通过微扰实现波数补偿,将受限的SSP转化为自由空间自由电子辐射。由于角动量守恒定律,在此过程中,该过程将SSP的横向自旋角动量转化为自由电子辐射的纵向自旋角动量,从而产生宽光谱范围内纯净、可调谐的手性自由电子辐射。该方法实现了接近 -1的最佳圆偏振度。这种创新方法可应用于基于SML的导模或硅光子学平台,为实现手性发射提供了新途径。