Activating Strongest Possible Nonlocality from Local Sets: An
Elimination Paradigm
- URL: http://arxiv.org/abs/2201.12832v1
- Date: Sun, 30 Jan 2022 14:35:02 GMT
- Title: Activating Strongest Possible Nonlocality from Local Sets: An
Elimination Paradigm
- Authors: Subhendu B. Ghosh, Tathagata Gupta, Ardra A. V., Anandamay Das
Bhowmik, Sutapa Saha, Tamal Guha and Amit Mukherjee
- Abstract summary: Quantum theory exhibits another kind of nonlocality that involves the indistiguishability of the locally preparable set of multipartite states.
Although, recently it is shown that a stronger notion of such a nonlocality, which deals with elimination instead of discrimination, can be activated from locally preparable bipartite states of dimension 7 $times$ 8, the present work observes that the same notion can be demonstrated even in lower dimensional multipartite systems.
- Score: 0.0
- License: http://creativecommons.org/licenses/by/4.0/
- Abstract: Apart from the Bell nonlocality, which deals with the correlations generated
from the local input-output statistics, quantum theory exhibits another kind of
nonlocality that involves the indistiguishability of the locally preparable set
of multipartite states. While Bell-type nonlocality cannot be distilled from a
given local correlation, it is already reported that the latter kind of
nonlocality can be activated from a "local", i.e., locally distinguishable set
of states. Although, recently it is shown that a stronger notion of such a
nonlocality, which deals with elimination instead of discrimination, can be
activated from locally preparable bipartite states of dimension 7 $\times$ 8,
the present work observes that the same notion can be demonstrated even in
lower dimensional multipartite systems. Importantly,the strongest possible
version of such an activation is further depicted here, where none of the
transformed product states can be eliminated, even if all but one of the
parties come together.
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