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Spin–Spin Coupling: Two-Bond Coupling (Geminal Coupling)01:20

Spin–Spin Coupling: Two-Bond Coupling (Geminal Coupling)

Two NMR-active nuclei bonded to a central atom can be involved in geminal or two-bond coupling. Geminal coupling is commonly seen between diastereotopic protons in chiral molecules and unsymmetrical alkenes, among others.
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Fiber-reinforced concrete significantly enhances the structural and nonstructural properties of traditional concrete by incorporating fibers like steel, glass, and polymers. These fibers, varying from natural ones such as sisal and cellulose to manufactured ones like polypropylene and Kevlar, are mixed into hydraulic cement with aggregates. Steel fibers, often preferred for their robustness, contribute to improved ductility, toughness, and post-cracking performance. The concrete is classified...
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Related Experiment Video

Updated: Jul 19, 2026

Writing Bragg Gratings in Multicore Fibers
08:48

Writing Bragg Gratings in Multicore Fibers

Published on: April 20, 2016

Coupling characteristics between single-core fiber and multicore fiber.

Libo Yuan1, Zhihai Liu, Jun Yang

  • 1Photonics Research Center, College of Science, Harbin Engineering University, Harbin 150001, China. lbyuan@vip.sina.com

Optics Letters
|October 31, 2006
PubMed
Summary

A straightforward method simplifies connecting single-core and multicore single-mode fibers. This technique utilizes standard splicing and tapering for effective fiber optic coupling.

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Last Updated: Jul 19, 2026

Writing Bragg Gratings in Multicore Fibers
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Transmission of Multiple Signals through an Optical Fiber Using Wavefront Shaping

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Area of Science:

  • Optoelectronics
  • Fiber Optics
  • Photonics

Background:

  • Efficiently coupling different fiber types is crucial for optical communication systems.
  • Existing methods for connecting single-core and multicore fibers can be complex.

Purpose of the Study:

  • To propose and demonstrate a simple and effective method for coupling single-core single-mode fiber (SCSMF) to multicore single-mode fiber (MSMF).
  • To provide a practical solution for interconnecting dissimilar fiber optic components.

Main Methods:

  • The proposed method involves standard fiber splicing techniques.
  • A tapering process is applied to the fibers to facilitate the coupling.
  • The coupling is achieved between a SCSMF and an MSMF.

Main Results:

  • The study successfully demonstrated the proposed coupling method.
  • The technique proved effective in joining SCSMF and MSMF.
  • The process relies on readily available splicing and tapering procedures.

Conclusions:

  • A simple and effective method for coupling SCSMF to MSMF has been developed.
  • Standard splicing and tapering offer a viable approach for interconnecting these fiber types.
  • This technique can potentially simplify the assembly of optical devices requiring fiber connections.