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20162025
most citedFeasibility Assessment For Practical Continuous Variable Quantum Key Distribution Over The Satellite-to-Earth Channel

43 citations · 57 across the 3 of their papers we have counts for

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quant-ph2025

Quantum Key Distribution

Sebastian Kish, Josef Pieprzyk, Seyit Camtepe

Quantum Key Distribution (QKD) is a technology that ensures secure communication by leveraging the principles of quantum mechanics, such as the no-cloning theorem and quantum uncer…

quant-ph20251 cited

Dynamic Continuous Variable Quantum Key Distribution for Securing a Future Global Quantum Network

Mikhael T. Sayat, Sebastian P. Kish, Ping Koy Lam +2

Continuous variable quantum key distribution (CVQKD) is a developing method to secure information exchange in future quantum networks. With the recent developments in quantum techn…

quant-ph202213 cited

Quantum effects in rotating reference frames

Sebastian P. Kish, Timothy C. Ralph

We consider the time delay of interfering single photons oppositely traveling in the Kerr metric of a rotating massive object. Classically, the time delay shows up as a phase diffe…

quant-ph2020

Use of a Local Local Oscillator for the Satellite-to-Earth Channel

Sebastian Kish, Eduardo Villaseñor, Robert Malaney +2

Continuous variable quantum key distribution (CV-QKD) offers information-theoretic secure key sharing between two parties. The sharing of a phase reference frame is an essential re…

quant-ph202043 cited

Feasibility Assessment For Practical Continuous Variable Quantum Key Distribution Over The Satellite-to-Earth Channel

Sebastian Kish, Eduardo Villaseñor, Robert Malaney +2

Currently, quantum key distribution (QKD) using continuous variable (CV) technology has only been demonstrated over short-range terrestrial links. Here we attempt to answer whether…

quant-ph2016

Estimating space-time parameters with a quantum probe in a lossy environment

Sebastian P. Kish, Timothy C. Ralph

We study the problem of estimating the Schwarzschild radius of a massive body using Gaussian quantum probe states. Previous calculations assumed that the probe state remained pure…