We found a match
Your institution may have access to this item. Find your institution then sign in to continue.
- Title
Uncertainty decomposition of quantum networks in SLH framework.
- Authors
Azodi, Peyman; Setoodeh, Peyman; Khayatian, Alireza; Asemani, Mohammad Hassan
- Abstract
Summary: This paper presents a systematic method to decompose uncertain linear quantum input‐output networks into uncertain and nominal subnetworks, when uncertainties are defined in SLH representation. To this aim, two decomposition theorems are stated, which show how an uncertain quantum network can be decomposed into nominal and uncertain subnetworks in cascaded connection and how uncertainties can be translated from SLH parameters into state‐space parameters. As a potential application of the proposed decomposition scheme, robust stability analysis of uncertain quantum networks is briefly introduced. The proposed uncertainty decomposition theorems take account of uncertainties in all three parameters of a quantum network and bridge the gap between SLH modeling and state‐space robust analysis theory for linear quantum networks.
- Subjects
ROBUST stability analysis; QUANTUM cryptography; UNCERTAINTY; QUANTUM theory
- Publication
International Journal of Robust & Nonlinear Control, 2019, Vol 29, Issue 18, p6542
- ISSN
1049-8923
- Publication type
Article
- DOI
10.1002/rnc.4740