Microprocessor communications have received a boost from the integration of electronics and photonics in silicon — a first step towards low power consumption and efficient computing systems. See Letter p.534
This is a preview of subscription content, access via your institution
Relevant articles
Open Access articles citing this article.
-
Investigation of carrier confinement in direct bandgap GeSn/SiGeSn 2D and 0D heterostructures
Scientific Reports Open Access 22 October 2018
Access options
Subscription info for Japanese customers
We have a dedicated website for our Japanese customers. Please go to natureasia.com to subscribe to this journal.
Buy this article
- Purchase on SpringerLink
- Instant access to full article PDF
Prices may be subject to local taxes which are calculated during checkout
Notes
References
Miller, D. A. B. Proc. IEEE 97, 1166–1185 (2009).
Handbook of Silicon Photonics (eds Vivien, L. & Pavesi, L.) (CRC Press, 2013).
Sun, C. et al. Nature 528, 534–538 (2015).
Fedeli, J-M. et al. IEEE J. Sel. Topics Quantum Electron. 20, 8201909 (2014).
Baehr-Jones, T. et al. Nature Photon. 6, 206–208 (2012).
Narasimha, A. et al. In Optical Fiber Commun. Natl Fiber Optic Eng. Conf. http://dx.doi.org/10.1109/OFC.2008.4528356 (2008).
Author information
Authors and Affiliations
Corresponding author
Related links
Related links
Related links in Nature Research
Computer science: Nanoscale connections for brain-like circuits
Rights and permissions
About this article
Cite this article
Vivien, L. Silicon chips lighten up. Nature 528, 483–484 (2015). https://doi.org/10.1038/528483a
Published:
Issue Date:
DOI: https://doi.org/10.1038/528483a
This article is cited by
-
Direct-bandgap emission from hexagonal Ge and SiGe alloys
Nature (2020)
-
Investigation of carrier confinement in direct bandgap GeSn/SiGeSn 2D and 0D heterostructures
Scientific Reports (2018)