Accès ouvert
2026
article
OpenAlex
Daniel A. Nolan
In this study, we simulate the propagation of a single photon propagating within a modal group, traversing a multimode optical fiber in the presence of mode coupling. We illustrate the propagation graphically on a group of higher-order Poincaré spheres. The spheres display …
Accès ouvert
2026
preprint
OpenAlex
Daniel A. Nolan
We simulate the propagation of a W states through an optical fiber in the presence of mode coupling. We illustrate the propagating quantum state graphically on a group of higher order Poincaré spheres. The spheres show the propagation of the light in …
us
(code pays fourni par la source)
Accès ouvert
2026
preprint
OpenAlex
Daniel A. Nolan
We simulate the propagation of a W states through an optical fiber in the presence of mode coupling. We illustrate the propagating quantum state graphically on a group of higher order Poincaré spheres. At the fiber output we show how to recover …
us
(code pays fourni par la source)
Accès ouvert
2025
preprint
OpenAlex
Daniel A. Nolan
We simulate the propagation of a W states through an optical fiber in the presence of mode coupling. We illustrate the propagating quantum state graphically on a group of higher order Poincaré spheres. At the fiber output we show how to recover …
us
(code pays fourni par la source)
Accès ouvert
2025
article
OpenAlex
Daniel A. Nolan
Higher-dimensional communications in optical fiber enables new possibilities, including increased transmission capacity and hyper-entangled state transfer. However, mode coupling between channels during transmission causes interference between channels and limits detection. In classical optical communications, MIMO (modes in modes out) is a means …
us
(code pays fourni par la source)
Accès ouvert
2025
preprint
OpenAlex
Daniel A. Nolan
Higher dimensional communications in optical fiber enables new possibilities including increased transmission capacity and hyperentangled state transfer. Mode coupling among channels during transmission however causes interference among channels and limits detection. In classical optical communications, MIMO (modes in modes out) is a …
Accès ouvert
2024
article
OpenAlex
Daniel A. Nolan
Higher-dimensional communications are of interest for multiple reasons, including increasing the classical transmission capacity and, more recently, the quantum state transfer through fibers using the many modes within the fiber. For quantum communications, this enables an increase in the number of bits …
us
(code pays fourni par la source)
Accès ouvert
2023
preprint
OpenAlex
Daniel A. Nolan
us
(code pays fourni par la source)
2022
conference-paper
OpenAlex
Dan Trung Nguyen, Kam C. Ng, Santanu Basu, Daniel A. Nolan et autres
Quantum walks (QWs) have emerged from fundamental research to be one of key processes in quantum information technology including quantum computing and quantum communication. In this paper, we present results of our numerical investigation of quantum walks (QWs) in different types of …
us
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Accès ouvert
2022
article
OpenAlex
Samael Sarmiento, S. Etcheverry, J. Aldama, I H López et autres
Abstract The secure transfer of information is critical to the ever-increasing demands of the digital world. Continuous-variable quantum key distribution (CV-QKD) is a promising technology that can provide high secret key rates over metropolitan areas, using conventional telecom components. In this study, …
es, se, us
(code pays fourni par la source)
Accès ouvert
2022
article
OpenAlex
Keith Veenhuizen, Collin Barker, Jacob Franklin, Sean D. McAnany et autres
us
(code pays fourni par la source)
2022
conference-paper
OpenAlex
Dan Trung Nguyen, Daniel A. Nolan, Nicholas F. Borrelli, David A. S. Loeber
Localized quantum walks are theoretically investigated in new class of quasiperiodic photonics lattices. Theoretical results have been validated quantitatively by experiments of quantum walks in Fibonacci multicore fibers.
us
(code pays fourni par la source)