QUANTUM SOURCE LABS LTD. (20240338587). A RESOURCE FOR QUANTUM COMPUTING simplified abstract

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A RESOURCE FOR QUANTUM COMPUTING

Organization Name

QUANTUM SOURCE LABS LTD.

Inventor(s)

Gil Semo of Tel-Aviv (IL)

Ziv Aqua of Rehovot (IL)

Oded Melamed of Shoham (IL)

Dan Charash of Herzliya (IL)

Serge Rosenblum of Rehovot (IL)

Barak Dayan of Tel-Aviv (IL)

A RESOURCE FOR QUANTUM COMPUTING - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240338587 titled 'A RESOURCE FOR QUANTUM COMPUTING

The patent application describes a quantum computing system that utilizes a vacuum chamber, an atom source input, a photonic integrated circuit (PIC), trapping and excitation lasers, a waveguide, and an output channel for quantum light generation.

  • The system involves a vacuum chamber for conducting quantum computing operations.
  • An atom source input is used to introduce atoms into the vacuum chamber.
  • A photonic integrated circuit (PIC) contains an interaction region where atoms interact with light.
  • Trapping and excitation lasers manipulate the electronic or nuclear state of the atom.
  • A waveguide guides input light to the interaction region, while an output channel directs quantum light out of the vacuum chamber.
  • The PIC is designed to be partially exposed to the vacuum for efficient operation.

Potential Applications: - Quantum computing research and development - Quantum communication systems - Quantum cryptography

Problems Solved: - Enhancing quantum computing capabilities - Improving quantum light generation efficiency

Benefits: - Increased speed and efficiency in quantum computing - Enhanced security in quantum communication - Potential for breakthroughs in quantum technology

Commercial Applications: Title: Quantum Computing System with Enhanced Light Generation This technology could be utilized in industries such as: - Information technology - Telecommunications - Cybersecurity

Questions about Quantum Computing System with Enhanced Light Generation: 1. How does the interaction between atoms and light contribute to quantum computing efficiency? 2. What are the potential limitations of using a vacuum chamber in quantum computing systems?

Frequently Updated Research: Researchers are constantly exploring new methods to improve the efficiency and scalability of quantum computing systems. Stay updated on the latest advancements in quantum technology to understand the full potential of this innovation.


Original Abstract Submitted

a quantum computing system, method and computer readable medium involve a vacuum chamber, an atom source input associated with the vacuum chamber, a photonic integrated circuit (pic) having an interaction region configured to interact with an atom from the atom source, a coupling location for atom positioning, a trapping laser for trapping the atom in the coupling location, an excitation laser for manipulating an electronic state or a nuclear state of the atom, a waveguide for guiding input light to the coupling location, and an output channel for directing quantum light generated at the coupling location, out of the vacuum chamber as a resource for quantum computing. the coupling location is associated with the pic, and the interaction region of the pic is arranged for at least partial exposure to the vacuum.