Intel corporation (20240111092). PILLAR STRUCTURES ON AN OPTICAL WAVEGUIDE simplified abstract

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PILLAR STRUCTURES ON AN OPTICAL WAVEGUIDE

Organization Name

intel corporation

Inventor(s)

Brandon C. Marin of Gilbert AZ (US)

Gang Duan of Chandler AZ (US)

Jeremy D. Ecton of Gilbert AZ (US)

Suddhasattwa Nad of Chandler AZ (US)

Srinivas V. Pietambaram of Chandler AZ (US)

PILLAR STRUCTURES ON AN OPTICAL WAVEGUIDE - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240111092 titled 'PILLAR STRUCTURES ON AN OPTICAL WAVEGUIDE

Simplified Explanation

The abstract describes a patent application related to an optical waveguide with pillar structures for improved alignment tolerance and light focusing capabilities.

  • The optical waveguide includes pillar structures in the optical path between the waveguide and a photonic integrated circuit (PIC).
  • The pillar structures form an evanescent coupling structure to increase alignment tolerance between the PIC and the waveguide.
  • Each pillar structure end may have a mass of material like gold, silver, or copper to interact with light from the PIC in a plasmon effect, focusing the light onto the waveguide.

Potential Applications

This technology could be applied in telecommunications, data transmission, and optical sensing applications.

Problems Solved

This innovation solves the problem of alignment issues between photonic integrated circuits and optical waveguides, as well as enhances light focusing capabilities.

Benefits

The benefits of this technology include improved alignment tolerance, enhanced light focusing, and potentially increased efficiency in optical systems.

Potential Commercial Applications

A potential commercial application for this technology could be in the development of high-speed data transmission systems for telecommunications companies.

Possible Prior Art

One possible prior art could be the use of micro-lenses or other optical components to focus light in optical systems.

Unanswered Questions

How does this technology compare to existing methods for aligning photonic integrated circuits with optical waveguides?

This technology offers improved alignment tolerance compared to traditional methods, but the specific performance metrics and comparisons with existing methods are not provided in the abstract.

What are the potential limitations or challenges in implementing this technology in practical applications?

The abstract does not mention any potential limitations or challenges that may arise in implementing this technology, such as cost, scalability, or compatibility with existing systems.


Original Abstract Submitted

embodiments herein relate to systems, apparatuses, techniques for an optical waveguide that includes a plurality of pillar structures that are in an optical path between the optical waveguide and a pic. in embodiments, the plurality of pillar structures form an evanescent coupling structure that increases the alignment tolerance between the pic and the optical waveguide. in embodiments, an end of each of the plurality of pillar structures may include a mass of material, such as gold, silver, or copper, that light from the pic interacts with in a plasmon effect to focus the light on to the optical waveguide. other embodiments may be described and/or claimed.