Merlo Juan M, Nesbitt Nathan T, Calm Yitzi M, Rose Aaron H, D'Imperio Luke, Yang Chaobin, Naughton Jeffrey R, Burns Michael J, Kempa Krzysztof, Naughton Michael J
Department of Physics, Boston College, 140 Commonwealth Ave. Chestnut Hill, Massachusetts 02467, USA.
Sci Rep. 2016 Aug 24;6:31710. doi: 10.1038/srep31710.
Present on-chip optical communication technology uses near-infrared light, but visible wavelengths would allow system miniaturization and higher energy confinement. Towards this end, we report a nanoscale wireless communication system that operates at visible wavelengths via in-plane information transmission. Here, plasmonic antenna radiation mediates a three-step conversion process (surface plasmon → photon → surface plasmon) with in-plane efficiency (plasmon → plasmon) of 38% for antenna separation 4λ0 (with λ0 the free-space excitation wavelength). Information transmission is demonstrated at bandwidths in the Hz and MHz ranges. This work opens the possibility of optical conveyance of information using plasmonic antennas for on-chip communication technology.
目前的片上光通信技术使用近红外光,但可见光波长将允许系统小型化和更高的能量限制。为此,我们报告了一种通过面内信息传输在可见光波长下运行的纳米级无线通信系统。在这里,等离子体天线辐射介导了一个三步转换过程(表面等离子体→光子→表面等离子体),对于天线间距为4λ0(λ0为自由空间激发波长),面内效率(等离子体→等离子体)为38%。在赫兹和兆赫兹范围内的带宽上演示了信息传输。这项工作为使用等离子体天线进行片上通信技术的信息光传输开辟了可能性。