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Applied Mathematics & Information Sciences
An International Journal
               
 
 
 
 
 
 
 
 
 
 
 
 
 

Content
 

Volumes > Volume 20 > No. 2

 
   

Quantum Cryptography and Key Encoding on Ion Chains via the Lieb-Liniger Model

PP: 339-345
doi:10.18576/amis/200203        
Author(s)
Mukhayo Yunusovna Rasulova,
Abstract
The development of quantum computers is one of the central challenges of modern science. Among various physical platforms, trapped ion–based systems have emerged as a promising approach for information processing. In this work, we present a method for quantum cryptography using one-dimensional ion chains modeled by the Lieb–Liniger Hamiltonian. Effective contact interactions naturally arise in the short-range limit of screened Coulomb potentials between ions, providing a controllable and analytically tractable framework.

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