36
collaborators
2010–2024
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
4 Talks
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Quantum networks self-test all entangled states | QIP 2023 | regular | ▸Ivan Supic, Joseph Bowles, Marc-Olivier Renou, Antonio Acin |
| Quantum networks self-test all entangled states | QCRYPT 2022 | regular | Ivan Supic, Joseph Bowles, Marc Olivier Renou, Antonio Acin |
| A single entangled system is an unbounded source of nonlocal correlations and of certified random numbers | TQC 2017 | regular | Florian John Curchod, Markus Johansson, Remigiusz Augusiak, Peter Wittek, Antonio Acin |
| Almost quantum | QIP 2014 | regular | ▸Miguel Navascués, Yelena Guryanova, Antonio Acin |
9 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Activation of post-quantumness in generalized EPR scenarios | TQC 2024 | Beata Zjawin, Ana Belén Sainz, Paul Skrzypczyk |
| Certified Quantum Random Numbers from Untrusted Light | QCRYPT 2021 | David Drahi, Nathan Walk, Aleksey K Federov, Roman Shakhovoy, Yury Kurochkin, Akky Feimov, W Steven Kolthammer, Joshua Nunn, Jonathan Barrett, Ian Walmsley |
A remarkable aspect of quantum theory is that certain measurement outcomes are entirely unpredictable to all possible observers. Such quantum events can be harnessed to generate numbers whose randomness is asserted based upon the underlying physical processes. We formally introduce, design, and experimentally demonstrate an ultrafast optical quantum random number generator that uses a totally untrusted photonic source. While considering completely general quantum attacks and using dedicated FPGA hardware for post-processing, we certify and generate in real time random numbers at a rate of 8.05 Gb/s with a composable security parameter of 10^{−10}. Composable security is the most stringent and useful security paradigm because any given protocol remains secure even if arbitrarily combined with other instances of the same, or other, protocols, thereby allowing the generated randomness to be utilized for arbitrary applications in cryptography and beyond. This work achieves the fastest generation of composably secure quantum random numbers ever reported. |
||
| Non-Unitary Quantum Computation in the Ground Space of Local Hamiltonians | QIP 2018 | Nairi Usher, Dan Browne |
| Certifying maximal randomness from a pair of entangled qubits | QIP 2016 | Antonio Acin, Remigiusz Augusiak, Florian John Curchod, Markus Johansson, Stefano Pironio, Tamás Vértesi, Peter Wittek |
| The computational landscape of generalised probabilistic theories | QIP 2016 | Jonathan Barrett, Ciaran Lee, Niel de Beaudrap |
Understanding the relation between randomness and non-locality is a fundamental question in quantum physics. The non-local correlations observed when measuring entangled quantum particles certify the presence of randomness in the measurement outputs in a way that is independent on the underlying physical realization of these correlations. |
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| Majorana fermions and non-locality | QIP 2014 | Earl Campbell, Jens Eisert |
| Maximally non-local theories cannot be maximally random | QIP 2014 | Gonzalo de La Torre, Chirag Dhara, Giuseppe Prettico, Antonio Acin |
| A bigger quantum region in multi-party Bell experiments | QIP 2011 | Dan Browne |
| Multi-party Computational Bell inequalities | QIP 2010 | Earl Campbell, Klearchos Loukopoulos, Dan Browne |
Collaborators
| Co-author | Joint talks |
|---|---|
| Antonio Acin | 6 |
| Dan Browne | 3 |
| Earl Campbell | 2 |
| Florian John Curchod | 2 |
| Ivan Supic | 2 |
| Jonathan Barrett | 2 |
| Joseph Bowles | 2 |
| Markus Johansson | 2 |
| Peter Wittek | 2 |
| Remigiusz Augusiak | 2 |
| Akky Feimov | 1 |
| Aleksey K Federov | 1 |
| Ana Belén Sainz | 1 |
| Beata Zjawin | 1 |
| Chirag Dhara | 1 |
| Ciaran Lee | 1 |
| David Drahi | 1 |
| Giuseppe Prettico | 1 |
| Gonzalo de La Torre | 1 |
| Ian Walmsley | 1 |