Topological Programmable Scalable Quantum Computing Machine Utilizing Chord Line Quasi Unidimensional Aperature Tunneling Semiconductor Structures
Patent №
US 10,873,019
Granted
2020-12-22
Filed 2019
Owner
EQUAL1.LABS INC.
Lab
—
AI components
1
hardware
Assignment
Recorded
Dataset
AIPD
2023_r1 edition
Application
16524259
A novel and useful topological, scalable, and reprogrammable quantum computing machine having one or more quasi-unidimensional chord lines along which the movement of a particle is constrained. The unidimensional passage has localized energy levels that can be controlled with classic electronics. The chord line has two or more quantum dots between which a quasi-unidimensional channel is formed for the particle to travel from one qdot to the other. The tunneling path may be polysilicon, metal, thin oxide, or induced depletion region. The chord line can be in a two-dimensional space for a planar process or in a three-dimensional space with multiple layers of signal processing for a three dimensional process. A quantum structure has semiconductor dots with a layer that provides the chord line for the quantum particle evolution to occur from one dot to the other. The various layers may include polysilicon, metal, thin oxide, or induced depletion region either fully overlapped or partially overlapped.
AI classification
Ownership
EQUAL1.LABS INC.
assignment · 513210003
Assignors
LEIPOLD, DIRK ROBERT WALTER, MAXIM, GEORGE ADRIAN, ASKER, MICHAEL ALBERT
On an employer assignment, the assignors are typically the inventors.