Jump to content

18337949. METHOD TO ACCESS FIBONACCI ANYONS FOR TOPOLOGICIAL QUANTUM COMPUTATION IN A CORRELATED TWO-DIMENSIONAL ELECTRON SYSTEM (NOKIA TECHNOLOGIES OY)

From WikiPatents
Revision as of 03:39, 11 May 2025 by Wikipatents (talk | contribs) (Creating a new page)
(diff) ← Older revision | Latest revision (diff) | Newer revision → (diff)


METHOD TO ACCESS FIBONACCI ANYONS FOR TOPOLOGICIAL QUANTUM COMPUTATION IN A CORRELATED TWO-DIMENSIONAL ELECTRON SYSTEM

Organization Name

NOKIA TECHNOLOGIES OY

Inventor(s)

Robert Willett of Warren NJ US

METHOD TO ACCESS FIBONACCI ANYONS FOR TOPOLOGICIAL QUANTUM COMPUTATION IN A CORRELATED TWO-DIMENSIONAL ELECTRON SYSTEM

This abstract first appeared for US patent application 18337949 titled 'METHOD TO ACCESS FIBONACCI ANYONS FOR TOPOLOGICIAL QUANTUM COMPUTATION IN A CORRELATED TWO-DIMENSIONAL ELECTRON SYSTEM

Original Abstract Submitted

A method is provided for operating a fractional quantum Hall apparatus including a set of interferometers, each having a cell and a set of gate electrodes located around the cell. The method includes calibrating each one of the interferometers to confine a droplet of a 2D charge carrier gas in a fractional quantum Hall effect state of filling factor or , while a reentrant phase of integer quantum Hall effect states of the 2D charge carrier gas is located between the area of the droplet in a fractional quantum Hall effect state and the interferometer electrodes. The calibrating includes setting a value of a magnetic field across the apparatus such that the reentrant phase and the droplet of the 2D charge carrier gas are present in at least one of the interferometers based on interference measurements on at least one of the interferometers for different values of the magnetic field.

(Ad) Transform your business with AI in minutes, not months

Custom AI strategy tailored to your specific industry needs
Step-by-step implementation with measurable ROI
5-minute setup that requires zero technical skills
Get your AI playbook

Trusted by 1,000+ companies worldwide

Cookies help us deliver our services. By using our services, you agree to our use of cookies.