High-dimensional quantum steering can be seen as a test for the dimensionality of entanglement, where the devices at one side are not characterized. As such, it is an important component in quantum informational protocols that make use of high-dimensional entanglement. Although it has been recently observed experimentally, the phenomenon of high-dimensional steering is lacking a general certification procedure. We provide necessary and sufficient conditions to certify the entanglement dimension in a steering scenario. These conditions are stated in terms of a hierarchy of semidefinite programs, which can also be used to quantify the phenomenon using the steering dimension robustness. To demonstrate the practical viability of our method, we ...
We consider the task of certification of genuine entanglement of tripartite states. For this purpos...
This work analyzes correlations arising from quantum systems subject to sequential projective measur...
The Hilbert space dimension of a quantum system is the most basic quantifier of its information cont...
High-dimensional quantum entanglement can give rise to stronger forms of nonlocal correlations compa...
One of the most often implied benefits of high-dimensional (HD) quantum systems is to lead to strong...
Einstein-Podolsky-Rosen steering is a manifestation of quantum correlations exhibited by quantum sys...
The idea of self-testing is to render guarantees concerning the inner workings of a device based on...
Steering is the entanglement-based quantum effect that embodies the "spooky action at a distance" di...
Within the framework of quantum refereed steering games, quantum steerability can be certified witho...
Entanglement is generally considered necessary for achieving the Heisenberg limit in quantum metrolo...
The quantum world differs from our classical experience in many ways. Perhaps most curious is the ph...
Quantum steering is a central resource for one-sided device-independent quantum information. It is m...
We show how to certify that a bipartite system is entangled through a simple procedure that works...
In recent years nonlocality has been extensively explored as a resource for self-testing -- a device...
We present a scheme for quantum randomness certification based on quantum steering. The protocol is ...
We consider the task of certification of genuine entanglement of tripartite states. For this purpos...
This work analyzes correlations arising from quantum systems subject to sequential projective measur...
The Hilbert space dimension of a quantum system is the most basic quantifier of its information cont...
High-dimensional quantum entanglement can give rise to stronger forms of nonlocal correlations compa...
One of the most often implied benefits of high-dimensional (HD) quantum systems is to lead to strong...
Einstein-Podolsky-Rosen steering is a manifestation of quantum correlations exhibited by quantum sys...
The idea of self-testing is to render guarantees concerning the inner workings of a device based on...
Steering is the entanglement-based quantum effect that embodies the "spooky action at a distance" di...
Within the framework of quantum refereed steering games, quantum steerability can be certified witho...
Entanglement is generally considered necessary for achieving the Heisenberg limit in quantum metrolo...
The quantum world differs from our classical experience in many ways. Perhaps most curious is the ph...
Quantum steering is a central resource for one-sided device-independent quantum information. It is m...
We show how to certify that a bipartite system is entangled through a simple procedure that works...
In recent years nonlocality has been extensively explored as a resource for self-testing -- a device...
We present a scheme for quantum randomness certification based on quantum steering. The protocol is ...
We consider the task of certification of genuine entanglement of tripartite states. For this purpos...
This work analyzes correlations arising from quantum systems subject to sequential projective measur...
The Hilbert space dimension of a quantum system is the most basic quantifier of its information cont...