41
collaborators
2012–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
5 Talks
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Composable simultaneous purification: when all communication scenarios reduce to spatial correlations | TQC 2026 | regular | ▸Matilde Baroni, Dominik Leichtle, Ivan Supic, Damian Markham |
Bell non-locality is a powerful framework to distinguish classical, quantum, and post-quantum resources, which relies on non-communicating players. Under which restriction can we have the same separations, if we allow for communication? Non-signalling state assemblages, and the fact that they can always be simultaneously purified, turned out to be the key element to restrict the simplest bipartite communication scenario, the prepare-and-measure, to the standard bipartite Bell scenario. Yet, many distinctive features of quantum theory are genuinely multipartite and cannot be reduced to two-party behaviour. In this work we are interested in extending this simultaneous purification inspired result to all multipartite communication schemes. As a first step, we unify and extend the simultaneous purification result from states to instruments and super-instruments, which are composable structures, and open up the possibility to explore more complex communication scenarios. Our main contribution is to establish that arbitrary compositions of non-signalling assemblages cannot escape the standard spatial quantum Bell correlations set. As a consequence, any interactive quantum realization of correlations outside of this set must involve at least one signalling assemblage of quantum operations, even when the resulting correlations are non-signalling. |
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| One-to-one Correspondence between Deterministic Port-Based Teleportation and Unitary Estimation | QIP 2025 | regular | ▸Satoshi Yoshida, Yuki Koizumi, Michal Studzinski, Mio Murao |
| Simulating qubit correlations with classical communication | QIP 2023 | regular | ▸Martin Johannes Renner, Armin Tavakoli |
| Adaptive circuits exponentially outperforms parallel ones for universal unitary inversion | QIP 2020 | regular | Qingxiuxiong Dong, Atsushi Shimbo, Akihito Soeda, Mio Murao |
| Semi-device-independent certification of indefinite causal order | TQC 2020 | regular | ▸Jessica Bavaresco, Mateus Araújo, Caslav Brukner |
When transforming pairs of independent quantum operations according to the fundamental rules of quantum theory, an intriguing phenomenon emerges: some such higher-order operations may act on the input operations in an indefinite causal order. Recently, the formalism of process matrices has been developed to investigate these noncausal properties of higher-order operations. This formalism predicts, in principle, statistics that ensure indefinite causal order even in a device-independent scenario, where the involved operations are not characterised. Nevertheless, all physical implementations of process matrices proposed so far require full characterisation of the involved operations in order to certify such phenomena. Here we consider a semi-device-independent scenario, which does not require all operations to be characterised. We introduce a framework for certifying noncausal properties of process matrices in this intermediate regime and use it to analyse the quantum switch, a well-known higher-order operation, to show that, although it can only lead to causal statistics in a device-independent scenario, it can exhibit noncausal properties in semi-device-independent scenarios. This proves that the quantum switch generates stronger noncausal correlations than it was previously known. |
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15 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Can outcome communication explain Bell nonlocality? | QIP 2026 | Carlos Vieira, Carlos de Gois, Pedro Lauand, Lucas E. A. Porto, Sébastien Designolle |
| Exponential separation in quantum query complexity of the quantum switch with respect to simulations with standard quantum circuits | QIP 2025 | Hlér Kristjánsson, Tatsuki Odake, Satoshi Yoshida, Philip Taranto, Jessica Bavaresco, Mio Murao |
| Multicopy quantum state teleportation with application to storage and retrieval of quantum programs | QIP 2025 | Frédéric Grosshans, Michał Horodecki, Mio Murao, Tomasz Młynik, Michal Studzinski, Satoshi Yoshida |
| Advantages of adaptive and general strategies for discrimination of unitary channels beyond group-theoretical methods | QIP 2023 | Jessica Bavaresco, Mio Murao |
| Simulating qubit correlations with classical communication | TQC 2023 | Martin Johannes Renner, Armin Tavakoli |
| Success-or-draw: A strategy allowing repeat-until- success in quantum computation | QIP 2021 | Qingxiuxiong Dong, Akihito Soeda, Mio Murao |
| Strict hierarchy between parallel, sequential, and indefinite-causal-order strategies for channel discrimination | QIP 2021 | Jessica Bavaresco, Mio Murao |
| Consequences of preserving reversibility in quantum superchannels | TQC 2021 | Wataru Yokojima, Akihito Soeda, Mio Murao |
| Adaptive circuits exponentially outperforms parallel ones for universal unitary inversion | TQC 2020 | Qingxiuxiong Dong, Atsushi Shimbo, Akihito Soeda, Mio Murao |
| Algorithmic construction of LHV models and applications | TQC 2016 | Flavien Hirsch, Tamás Vértesi, Matthew Pusey, Nicolas Brunner |
| Genuine hidden quantum nonlocality | QIP 2014 | Flavien Hirsch, Joseph Bowles, Nicolas Brunner |
| Certifying the dimension of classical and quantum systems in a prepare-and-measure scenario with independent devices. | QIP 2014 | Joseph Bowles, Nicolas Brunner |
| Towards a loophole-free Bell test with continuous variables systems | QIP 2013 | Mateus Araújo, Daniel Cavalcanti, Colin Teo, Jiří Minář, Valerio Scarani, Adán Cabello, Marcelo França Santos, Marcelo Terra Cunha |
| Complete characterization of the n-cycle noncontextual polytope | QIP 2013 | Mateus Araújo, Costantino Budroni, Marcelo Terra Cunha, Adán Cabello |
| Maximal CHSH violations with low efficiency photodetection and homodyne measurements | QIP 2012 | Mateus Araújo, Daniel Cavalcanti, Marcelo França Santos, Marcelo Terra Cunha |
Collaborators
| Co-author | Joint talks |
|---|---|
| Mio Murao | 9 |
| Akihito Soeda | 4 |
| Jessica Bavaresco | 4 |
| Mateus Araújo | 4 |
| Marcelo Terra Cunha | 3 |
| Nicolas Brunner | 3 |
| Qingxiuxiong Dong | 3 |
| Satoshi Yoshida | 3 |
| Adán Cabello | 2 |
| Armin Tavakoli | 2 |
| Atsushi Shimbo | 2 |
| Daniel Cavalcanti | 2 |
| Flavien Hirsch | 2 |
| Joseph Bowles | 2 |
| Marcelo França Santos | 2 |
| Martin Johannes Renner | 2 |
| Michal Studzinski | 2 |
| Carlos Vieira | 1 |
| Carlos de Gois | 1 |
| Caslav Brukner | 1 |