Begin of page section:
Page sections:

  • Go to contents (Accesskey 1)
  • Go to position marker (Accesskey 2)
  • Go to main navigation (Accesskey 3)
  • Go to sub navigation (Accesskey 4)
  • Go to additional information (Accesskey 5)
  • Go to page settings (user/language) (Accesskey 8)
  • Go to search (Accesskey 9)

End of this page section. Go to overview of page sections

Begin of page section:
Page settings:

English en
Deutsch de
Search
Login

End of this page section. Go to overview of page sections

Begin of page section:
Search:

Search for details about Uni Graz
Close

End of this page section. Go to overview of page sections


Search

Begin of page section:
Main navigation:

Page navigation:

  • University

    University
    • About the University
    • Organisation
    • Faculties
    • Library
    • Working at University of Graz
    • Campus
    Developing solutions for the world of tomorrow - that is our mission. Our students and our researchers take on the great challenges of society and carry the knowledge out.
  • Research Profile

    Research Profile
    • Our Expertise
    • Research Questions
    • Research Portal
    • Promoting Research
    • Research Transfer
    • Ethics in Research
    • Commission for Scientific Integrity
    Scientific excellence and the courage to break new ground. Research at the University of Graz creates the foundations for making the future worth living.
  • Studies

    Studies
    • Prospective Students
    • Students
  • Community

    Community
    • International
    • Location
    • Research and Business
    • Alumni
    The University of Graz is a hub for international research and brings together scientists and business experts. Moreover, it fosters the exchange and cooperation in study and teaching.
  • Spotlight
Topics
  • Sustainable University
  • Researchers answer
  • Work for us
Close menu

End of this page section. Go to overview of page sections

Begin of page section:
You are here:

University of Graz Natural sciences Institute of Physics News Protection? Twist It!
  • About the institute
  • Our research
  • Personalities
  • Student Services
  • News
  • Events

End of this page section. Go to overview of page sections

Monday, 04 September 2023

Protection? Twist It!

Twisted air-holes for an extra level of quantum state protection. ©Uni Graz/Banzer

Twisted air-holes for an extra level of quantum state protection. Image: Uni Graz/Banzer

In a recent article published in Physical Review Applied, an international collaboration of various research groups shows that twisting air-holes can protect quantum states.

Optical fibers and fiber networks – representing the backbone of many forms of communication and information transfer – play an indispensable role in our modern society. Also, in the growing field of quantum communications offering advanced security, fibers act as the highways for photons. In many applications, polarization-maintaining fibers are of utmost importance, warranting the preservation of the polarization of in-coupled light during the guided propagation. Conventional fibers preserving polarization usually only do so for linear polarization states with the polarization axis aligned with their symmetry axes, which has certain disadvantages.

An international collaboration of research groups from Austria, Germany, Spain, Pakistan, and Russia now revealed that a special type of fiber, a so-called twisted photonic crystal fiber (PCFs) – hollow air channels curling around a central glassy guide – can have various advantages over conventional polarization-maintaining fibers.

Owing to their twist, the special PCFs studied in the article preserve circular rather than linear polarization. If linear polarization is coupled into such fibers, light stays linearly polarized with the polarization being only rotated but not converted into elliptical or circular. What sounds ‘mind-twisting’ and like a curiosity is a simple consequence of the fibers geometry, and it has multiple advantageous consequences. For instance, measuring in the linear polarization basis is experimentally more straight-forward and less prone to the introduction of extra noise. Hence, these special fibers ease the characterization of transmitted (quantum) information in the polarization basis, and they also offer advantages on the sender-side of the story, e.g., by their rotational symmetry, lifting the requirement of conventional polarization-preserving fibers with respect to polarization alignment. Furthermore, they work in a broad spectral range. The presented system will enable more efficient measurements of quantum states in optical communications or other fields.

This work is part of the QuNET initiative, a BMBF-funded project (German Federal Ministry of Education and Research) aiming for the development of highly secure communication systems based on cutting-edge quantum technologies.

Article link: https://doi.org/10.1103/PhysRevApplied.19.054080

Contact: Peter Banzer, peter.banzer(at)uni-graz.at

Group website: OpNaQ Group

 

created by Peter Banzer

Related news

Committed to the highest standards

Three young researchers from the OpNaQ group gain insight into the world of standardization.

And the winner is ...

The winner of this year's indoor soccer tournament for employees of Styrian universities, universities of applied sciences and teacher education comes from our Institute! We congratulate our team with the prestigious name ‘We All have Potential!’ on this great success!

Research on the International Stage

Visiting Award 2025 Takes Marko Šimić to Stanford University The Dean’s Office of the Faculty of Natural Sciences at the University of Graz has awarded Marko Šimić the Visiting Award 2025. This mobility fellowship is granted annually to outstanding early-career researchers. Its aim is to promote research at the highest level at internationally renowned research institutions, providing financial and organizational support from the University of Graz and its research management services.

Happy birthday Schrödinger equation!

One of the most important equations of physics celebrates a round birthday.

Begin of page section:
Additional information:

University of Graz
Universitaetsplatz 3
8010 Graz
Austria
  • Contact
  • Web Editors
  • Moodle
  • UNIGRAZonline
  • Imprint
  • Data Protection Declaration
  • Accessibility Declaration
Weatherstation
Uni Graz

End of this page section. Go to overview of page sections

End of this page section. Go to overview of page sections

Begin of page section:

End of this page section. Go to overview of page sections