Related papers: Detection of fidelity and multiparticle entangleme…
This paper has been withdrawn by the author(s), due a crucial sign error in Thm. 11.
This paper has been withdrawn by the authors, due a oversimplified decoherence model. It will be substituted by a new work.
This paper was withdrawn by the author due to a fatal error.
Certifying entanglement for unknown quantum states experimentally is a fundamental problem in quantum computing and quantum physics. Because of being easy to implement, a most popular approach for this problem in modern quantum experiments…
This paper has been withdrawn by the author due to the incorrect argument for the security.
This paper has been withdrawn by the author due to the presented idea is wrong.
This paper has been withdrawn by author due to an error in the proof.
The paper has been withdrawn by the author, due to a critical error stemming from the defined template.
Beam splitter mediated entanglement of nonlinear photon-added coherent states was studied by Honarasa, Bagheri and Gharaati [1]. We believe that this work contains errors in numerical computations of linear entropy and Mandel parameter…
This paper has been withdrawn by the authors, due Eqn. 8 is not a corollary of ref. 3 and does not hold generally.
This paper has been withdrawn due to fundamental errors.
This paper has been withdrawn by the author due to a crucial sign error in Theorem 3.4.
This paper has been withdrawn by the authors, due to a flaw in the proof of Theorem 1. This preprint is superseded by quant-ph/0610027, where a correct proof can be found. Thanks to Rainer Siegmund-Schultze for spotting the error.
This paper has been withdrawn by the author because of copyright reasons.
Major mistake. The paper has been withdrawn.
Detecting entanglement in multipartite quantum states is an inherently probabilistic process, typically with a few measured samples. The level of confidence in entanglement detection quantifies the scheme's validity via the probability that…
This paper has been withdrawn due to crucial erros in equations (24)--(31).
Given a suitably large and well connected (complex) graph state, any quantum algorithm can be implemented purely through local measurements on the individual qubits. Measurements can also be used to create the graph state: Path erasure…
This paper has been withdrawn by the author.
This paper has been withdrawn by the author(s)