9
program roles
1
organizing role
1
leadership role
52
collaborators
2010–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
19 Talks
| Title | Conference | Type | Co-authors |
|---|---|---|---|
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Parent Lindbladians for Matrix Product Density Operators ↗
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QIP 2026 | regular | ▸Yuhan Liu, Alberto Ruiz-de-Alarcón, Georgios Styliaris, Xiao-Qi Sun, Ignacio Cirac |
Understanding quantum phases of matter is a fundamental goal in physics. For pure states, the representatives of phases are the ground states of locally interacting Hamiltonians, which are also renormalization fixed points (RFPs). These RFP states are exactly described by tensor networks. Extending this framework to mixed states, matrix product density operators (MPDOs) which are RFPs are believed to encapsulate mixed-state phases of matter in one dimension, where non-trivial topological phases have already been shown to exist. However, to better motivate the physical relevance of those states, and in particular the physical relevance of the recently found non-trivial phases, it remains an open question whether such MPDO RFPs can be realized as steady states of local Lindbladians. In this work, we resolve this question by analytically constructing parent Lindbladians for MPDO RFPs. These Lindbladians are local, frustration-free, and exhibit minimal steady-state degeneracy. Interestingly, we find that parent Lindbladians possess a rich structure that distinguishes them from their Hamiltonian counterparts. In particular, we uncover an intriguing connection between the non-commutativity of the Lindbladian terms and the fact that the corresponding MPDO RFP belongs to a non-trivial phase. |
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| Security of position-based verification limits Hamiltonian simulation via holography | QIP 2024 | regular | ▸Harriet Apel, Toby Cubitt, Patrick Hayden, Tamara Kohler |
| Matrix product algebras and their application for phase classification | QIP 2024 | regular ▸ presenter | Andras Molnar, Alberto Ruiz-de-Alarcón, José Garre Rubio, Norbert Schuch, Ignacio Cirac |
| The minimal canonical form of a tensor network | QIP 2023 | plenary_short | Arturo Acuaviva, Visu Makam, Harold Nieuwboer, Friedrich Sittner, Michael Walter, ▸Freek Witteveen |
| Rapid thermalization of 1D commuting Hamiltonians | TQC 2022 | regular | Ivan Bardet, Ángela Capel, ▸Li Gao, Angelo Lucia, Cambyse Rouze |
| Entanglement consumption in attacks to Position Based Cryptography from geometry of Banach spaces | TQC 2021 | regular | ▸Aleksander Marcin Kubicki, Marius Junge, Carlos Palazuelos |
| Thermalization in Kitaev’s quantum double models via Tensor Network techniques | TQC 2021 | regular | Angelo Lucia, ▸Antonio Pérez-Hernández |
| On the modified logarithmic Sobolev inequality for the heat-bath dynamics for 1D systems | TQC 2020 | regular | Ivan Bardet, ▸Ángela Capel, Angelo Lucia, Cambyse Rouze |
The mixing time of Markovian dissipative evolutions of open quantum many-body systems can be bounded using optimal constants of certain quantum functional inequalities, such as the modified logarithmic Sobolev constant. For classical spin systems, the positivity of such constants follows from a mixing condition for the Gibbs measure, via quasi-factorization results for the entropy. Inspired by the classical case, we present a strategy to derive the positivity of the modified logarithmic Sobolev constant associated to the dynamics of certain quantum systems from some clustering conditions on the Gibbs state of a local, commuting Hamiltonian. In particular we show that for the heat-bath dynamics for 1D systems, the modified logarithmic Sobolev constant is positive under the assumptions of a mixing condition on the Gibbs state and a strong quasi-factorization of the relative entropy. |
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| A quantitative no-programming theorem | QIP 2019 | regular | Aleksander Marcin Kubicki, Carlos Palazuelos |
| Undecidability of the Spectral Gap in One Dimension | QIP 2019 | regular | ▸Johannes Bausch, Toby Cubitt, Angelo Lucia |
| Locality at the boundary implies gap in the bulk for 2D PEPS | TQC 2018 | regular | Michael Kastoryano, Angelo Lucia |
| Quantum conditional relative entropy and quasi-factorization of the relative entropy | TQC 2018 | regular | Ángela Capel, Angelo Lucia |
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Unbounded number of channel uses are required to see quantum capacity ↗
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QIP 2015 | regular | Toby Cubitt, David Elkouss, William Matthews, Maris Ozols, Sergii Strelchuk |
| Undecidability of the spectral gap | QIP 2014 | invited | ▸Toby Cubitt, Michael Wolf |
| Purifications of multipartite states: limitations and constructive methods | QIP 2014 | regular | ▸Gemma De las Cuevas, Norbert Schuch, Ignacio Cirac |
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“Resonating valence bond states in the PEPS formalism.” ↗
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QIP 2013 | regular | Norbert Schuch, Didier Poilblanc, Ignacio Cirac |
| “Rank-one and Quantum XOR games.” ↗ | QIP 2013 | regular | Tom Cooney, Marius Junge, Carlos Palazuelos, Oded Regev, Thomas Vidick |
| Preparing projected entangled pair states on a quantum computer | QIP 2012 | regular | Martin Schwarz, Kristan Temme, Frank Verstraete, Toby Cubitt |
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Measurements incompatible in quantum theory cannot be measured jointly in any other no-signaling theory ↗
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QIP 2010 | regular | Michael Wolf, Carlos Fernandez |
8 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Explicit Renormalization Group Flow from Perturbed Matrix Product Operators Using Random Walks | QIP 2026 | ▸Léo Le Nestour, Alberto Ruiz de Alarcón |
| Superadditivity of quantum relative entropy for general states | QIP 2018 | Ángela Capel, Angelo Lucia |
| Size-Driven Quantum Phase Transitions | QIP 2017 | Johannes Bausch, Toby Cubitt, Angelo Lucia, Michael Wolf |
| Superadditivity of quantum relative entropy for general states | TQC 2017 | Ángela Capel, Angelo Lucia |
| Extreme Finite Size Effects | QIP 2016 | Johannes Bausch, Toby Cubitt, Angelo Lucia, Michael Wolf |
| Lieb-Robinson bounds for spin-boson lattice models and trapped ions | QIP 2014 | Johannes Juenemann, Andrea Cadarso, Alejandro Bermúdez, Juan Jose Garcia-Ripoll |
| Gapless Hamiltonians for the toric code using the PEPS formalism | QIP 2013 | Carlos Fernández-González, Norbert Schuch, Michael Wolf, Ignacio Cirac |
| Inverting the Central Limit Theorem | QIP 2012 | Miguel Navascués, Ignacio Villanueva |
Committee service
| Conference | Committee | Position | Title |
|---|---|---|---|
| QIP 2026 | program | member | — |
| TQC 2026 | program | member | — |
| TQC 2025 | program | member | — |
| QIP 2022 | program | chair | — |
| QIP 2021 | program | member | — |
| QIP 2019 | program | member | — |
| QIP 2016 | program | member | — |
| TQC 2015 | program | member | — |
| QIP 2013 | program | member | — |
| TQC 2011 | organizing | member | — |
Collaborators
| Co-author | Joint talks |
|---|---|
| Angelo Lucia | 10 |
| Toby Cubitt | 7 |
| Ignacio Cirac | 5 |
| Michael Wolf | 5 |
| Ángela Capel | 5 |
| Norbert Schuch | 4 |
| Carlos Palazuelos | 3 |
| Johannes Bausch | 3 |
| Alberto Ruiz-de-Alarcón | 2 |
| Aleksander Marcin Kubicki | 2 |
| Cambyse Rouze | 2 |
| Ivan Bardet | 2 |
| Marius Junge | 2 |
| Alberto Ruiz de Alarcón | 1 |
| Alejandro Bermúdez | 1 |
| Andras Molnar | 1 |
| Andrea Cadarso | 1 |
| Antonio Pérez-Hernández | 1 |
| Arturo Acuaviva | 1 |
| Carlos Fernandez | 1 |