Project overview
HERMES is aimed at realising a Ge and GeSi material platform that will be aimed primarily at sustaining optical interconnect circuits to meet the density, data rate and power consumption requirements for the continuation of Moore's law beyond 2020. The ITRS roadmap shows a saturation of the number of electrical pins required for input/output on microprocessors beyond 2020 to about 3000 with current technology. This saturation with an ever increasing latency and a limited on-chip clock speed is a bottle neck that high density optical interconnects have to alleviate. To meet the ITRS 2020 goals the target is clear, with over 100 Tb/s off chip IO capability and power consumption for an entire optical link on the order of 100fJ/bit. This work proposes a solution to this problem and provides a novel means of fabrication to go beyond the capabilities of standard planar silicon photonics circuits. To do so we aim to develop a multilayer optical platform based on localised Germanium/Silicon compounds on insulator compatible with the fabrication of micrometre sized cavity based structures enabling devices such as modulators and detectors. The growth of laser sources based on III/V materials or doped Germanium could also be envisioned but this is beyond the scope of this proposal. The proposed platform will establish a means to fabricate and demonstrate micrometre scale optical devices fit to tackle the 3 dimensional, high density, low voltage and low capacitance requirements needed for very large scale optical integration necessary for optical on chip interconnects.
Staff
Lead researchers
Research outputs
R. Topley, A.Z. Khokhar, D.J. Thomson, S. Stanković, S. Reynolds, Xiao Chen, N. Soper, C.J. Mitchell, Y. Hu, L. Shen, G. Martinez-Jimenez, N. Healy, S. Mailis, A.C. Peacock, M. Nedeljković, F.Y. Gardes, J. Soler Penadés, C. Alonso-Ramos, A. Ortega-Moñux, G. Wangüemert-Pérez, I. Molina-Fernández, P. Cheben & G.Z. Mashanovich,
2016, Proceedings of SPIE, 9751
DOI: 10.1117/12.2218124
Type: article
Callum Littlejohns, Thalía Domínguez Bucio, Miloš Nedeljković, Hong Wang, Goran Mashanovich, Graham Reed & Frederic Gardes,
2016, Scientific Reports, 6
DOI: 10.1038/srep19425
Type: article
C.G. Littlejohns, M.S. Rouifed, H. Qiu, Tina Guo Xin, Ting Hu, T. Domínguez Bucio, M. Nedeljković, D.J. Thomson, A.Z. Khokhar, G.Z. Mashanovich, G.T. Reed, Hong Wang & F.Y. Gardes,
2016
Type: conference
M. Castro-Lopez, N. de Sousa, A. Garcia-Martin, F.Y. Gardes & R. Sapienza,
2015, Optics Express, 23(22), 28108-28118
DOI: 10.1364/OE.23.028108
Type: article
C.G. Littlejohns, A.Z. Khokhar, D.J. Thomson, Y. Hu, L. Basset, Scott Reynolds, G.Z. Mashanovich, G.T. Reed & F.Y. Gardes,
2015, IEEE Photonics Journal, 7(4), 1-8
Type: article
Benedetto Troia, Ali Khokhar, Miloš Nedeljković, Scott Reynolds, Youfang Hu, Goran Mashanovich & Vittorio Passaro,
2015, Sensors, 15(6), 13548-13567
DOI: 10.3390/s150613548
Type: article
Miloš Nedeljković, Jordi Soler Penadés, Colin J. Mitchell, Ali Z. Khokhar, Stevan Stanković, Thalía Domínguez Bucio, Callum Littlejohns, Frederic Y. Gardes & Goran Z. Mashanovich,
2015, IEEE Photonics Technology Letters, 27(10), 1040-1043
Type: article