Contact:
- email:
- maciej.demianowicz@pg.edu.pl
Positions:
Associate professor
- workplace:
- Instytut Fizyki i Informatyki Stosowanej
Gmach Główny, 033
- phone:
- +48 58 347 12 77

Publications:
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Publication
- M. Demianowicz
- K. Vogtt
- R. Augusiak
- PHYSICAL REVIEW A - Year 2024
We introduce a class of entangled subspaces: completely entangled subspaces of entanglement depth k (k-CESs). These are subspaces of multipartite Hilbert spaces containing only pure states with an entanglement depth of at least k. We present an efficient construction of k-CESs of any achievable dimensionality in any multipartite scenario. Further, we discuss the relation between these subspaces and unextendible product bases (UPBs)....
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Publication
- PHYSICAL REVIEW A - Year 2022
Unextendible product bases (UPBs) provide a versatile tool with various applications across different areas of quantum information theory. Their comprehensive characterization is thus of great importance and has been a subject of vital interest for over two decades now. An open question asks about the existence of UPBs, which are genuinely unextendible, i.e., they are not extendible even with biproduct vectors. In other words,...
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Publication
- Quantum Journal - Year 2022
We put forward a simple construction of genuinely entangled subspaces – subspaces supporting only genuinely multipartite entangled states – of any permissible dimensionality for any number of parties and local dimensions. The method uses nonorthogonal product bases, which are built from totally nonsingular matrices with a certain structure. We give an explicit basis for the constructed subspaces. An immediate consequence of our...
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Publication
- M. Demianowicz
- G. Rajchel-Mieldzioć
- R. Augusiak
- NEW JOURNAL OF PHYSICS - Year 2021
We introduce a simple sufficient criterion, which allows one to tell whether a subspace of a bipartite or multipartite Hilbert space is entangled. The main ingredient of our criterion is a bound on the minimal entanglement of a subspace in terms of entanglement of vectors spanning that subspace expressed for geometrical measures of entanglement. The criterion is applicable to both completely and genuinely entangled subspaces. We...
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Publication
- M. Demianowicz
- R. Augusiak
- Quantum Information Processing - Year 2020
Genuinely entangled subspaces (GESs) are the class of completely entangled subspaces that contain only genuinely multiparty entangled states. They constitute a particularly useful notion in the theory of entanglement but also have found an application, for instance, in quantum error correction and cryptography. In a recent study (Demianowicz and Augusiak in Phys Rev A 98:012313, 2018), we have shown how GESs can be efficiently...
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Projects:
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Projects
Project manager: dr hab. inż. Maciej Demianowicz Financial Program Name: MINIATURA
Project realized in Katedra Fizyki Atomowej, Molekularnej i Optycznej from 2018-10-19