Shanghai, China

Tinyun Wang


Average Co-Inventor Count = 10.0

ph-index = 1


Company Filing History:


Years Active: 2024

where 'Filed Patents' based on already Granted Patents

1 patent (USPTO):

Title: Innovations of Tinyun Wang in Photonic Technology

Introduction

Tinyun Wang is a notable inventor based in Shanghai, China. He has made significant contributions to the field of photonic technology, particularly in the development of advanced optical fiber waveguides. His innovative work focuses on enhancing the performance and efficiency of optical communication systems.

Latest Patents

Tinyun Wang holds a patent for a "Bending-resistant low-crosstalk photonic orbital angular momentum fiber waveguide." This invention features a unique structure that includes a first core layer, a second core layer, and multiple cladding layers. The design allows for effective regulation of different orbital angular momentum (OAM) modes, facilitating easier separation and multiplexing of signals. The effective refractive index difference between modes is greater than 2×10, which enhances the overall performance of the optical fiber.

Career Highlights

Wang is affiliated with Shanghai University, where he continues to engage in research and development in photonics. His work has garnered attention for its potential applications in high-speed data transmission and telecommunications. The innovative nature of his research positions him as a key figure in advancing optical technologies.

Collaborations

Tinyun Wang collaborates with esteemed colleagues such as Wei Chen and Fufei Pang. Their combined expertise contributes to the advancement of research in photonic systems and optical communications.

Conclusion

Tinyun Wang's contributions to photonic technology exemplify the innovative spirit of modern inventors. His patented work on bending-resistant low-crosstalk optical fiber waveguides showcases the potential for improved communication systems. Wang's ongoing research at Shanghai University continues to push the boundaries of what is possible in the field of photonics.

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