1. Steering-based randomness certification with squeezed states and homodyne measurements
- Author
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Ioannou, Marie, Longstaff, Bradley, Larsen, Mikkel V., Neergaard-Nielsen, Jonas S., Andersen, Ulrik L., Cavalcanti, Daniel, Brunner, Nicolas, and Brask, Jonatan Bohr
- Subjects
Quantum Physics - Abstract
We present a scheme for quantum randomness certification based on quantum steering. The protocol is one-sided device independent, providing high security, but requires only states and measurements that are simple to realise on quantum optics platforms - entangled squeezed vacuum states and homodyne detection. This ease of implementation is demonstrated by certifying randomness in existing experimental data and implies that giga-hertz random bit rates should be attainable with current technology. Furthermore, the steering-based setting represents the closest to full device independence that can be achieved using purely Gaussian states and measurements., Comment: 8 pages, 6 figures
- Published
- 2021
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