Projects per year
Abstract
Random number generation is crucial in many aspects of everyday life, as online security and privacy depend ultimately on the quality of random numbers. Many current implementations are based on pseudo-random number generators, but information security requires true random numbers for sensitive applications like key generation in banking, defence or even social media. True random number generators are systems whose outputs cannot be determined, even if their internal structure and response history are known. Sources of quantum noise are thus ideal for this application due to their intrinsic uncertainty. In this work, we propose using resonant tunnelling diodes as practical true random number generators based on a quantum mechanical effect. The output of the proposed devices can be directly used as a random stream of bits or can be further distilled using randomness extraction algorithms, depending on the application.
| Original language | English |
|---|---|
| Article number | 17879 |
| Number of pages | 6 |
| Journal | Scientific Reports |
| Volume | 7 |
| DOIs | |
| Publication status | Published - 19/12/2017 |
User-defined Keywords
- Electrical and electronic engineering
- Electronic and spintronic devices
Projects
- 2 Finished
-
EPSRC Centre for Doctoral Training in the Science and Applications of Graphene and Related Nanomaterials (GrapheneNOWNANO
Young, R. (Principal Investigator)
1/04/14 → 30/09/22
Project: Other
-
GaSb quantum dots for a room temperature light-matter interface
Young, R. (Principal Investigator)
1/10/12 → 30/08/17
Project: Research
Research output
- 10 Citations
- 1 Doctoral Thesis
-
Enhancing the Light output of Solid State Emitters
Woodhead, C. S., 2017, Lancaster University. 107 p.Research output: Thesis › Doctoral Thesis
Open AccessFile1097 Downloads (Pure)
Activities
- 1 Invited talk
Press/Media
-
Random Revolution
Bernardo Gavito, R. & Young, R. J.
2/07/18 → 11/07/18
24 items of Media coverage
Press/Media: Research
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