Asymptotic teleportation schemes bridging between standard and port-based teleportation

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Kim, Ha Eum, Jeong, Kabgyun
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866910532868505600
author Kim, Ha Eum
Jeong, Kabgyun
author_facet Kim, Ha Eum
Jeong, Kabgyun
contents Various modified quantum teleportation schemes are proposed to overcome experimental constraints or to meet specific application requirements for quantum communication. Hence, most schemes are developed and studied with unique methodologies, each with its inherent challenges. Our research focuses on interconnecting these schemes appearing to be unrelated to each other, based on the idea that the unique advantages of one scheme can compensate for the limitations of another. In this paper, we introduce an asymptotic teleportation scheme requiring the receiver to perform a classical selection task followed by a quantum correction. This scheme bridges standard teleportation with port-based teleportation through the transformation of joint measurements. Specifically, we categorize and analytically investigate protocols within this scheme for qubit systems. Given that linear optics teleportation protocol without ancilla qubits is contained in the two non-trivial groups, we provide a novel perspective on its expansion. Furthermore, we discuss the potential application of a protocol from one of these groups as a universal programmable processor and extend these protocols to higher-dimensional systems while maintaining the same properties and potential, providing the analytic form of the joint measurement and its performance. These results thereby propose new avenues for developing a quantum network in higher-dimensional systems.
format Preprint
id arxiv_https___arxiv_org_abs_2403_04315
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Asymptotic teleportation schemes bridging between standard and port-based teleportation
Kim, Ha Eum
Jeong, Kabgyun
Quantum Physics
Various modified quantum teleportation schemes are proposed to overcome experimental constraints or to meet specific application requirements for quantum communication. Hence, most schemes are developed and studied with unique methodologies, each with its inherent challenges. Our research focuses on interconnecting these schemes appearing to be unrelated to each other, based on the idea that the unique advantages of one scheme can compensate for the limitations of another. In this paper, we introduce an asymptotic teleportation scheme requiring the receiver to perform a classical selection task followed by a quantum correction. This scheme bridges standard teleportation with port-based teleportation through the transformation of joint measurements. Specifically, we categorize and analytically investigate protocols within this scheme for qubit systems. Given that linear optics teleportation protocol without ancilla qubits is contained in the two non-trivial groups, we provide a novel perspective on its expansion. Furthermore, we discuss the potential application of a protocol from one of these groups as a universal programmable processor and extend these protocols to higher-dimensional systems while maintaining the same properties and potential, providing the analytic form of the joint measurement and its performance. These results thereby propose new avenues for developing a quantum network in higher-dimensional systems.
title Asymptotic teleportation schemes bridging between standard and port-based teleportation
topic Quantum Physics
url https://arxiv.org/abs/2403.04315