IP Library Granted Patent US 10,020,438
Granted Patent B2
US 10,020,438 · App. 14/818,002 · Granted Jul 10, 2018

Magnetic topological nanowires

Inventors: Ali Yazdani (Princeton, NJ); Andrei Bernevig (Lawrenceville, NJ)
Assignee: The Trustees of Princeton University
H01L39/22B82Y10/00H01L39/12G06N99/002H01F1/0072
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Quick Facts
Patent No.
US 10,020,438
App. No.
14/818,002
Granted
Jul 10, 2018
Kind
B2
Abstract

A magnetic topological nanowire structure comprises a superconductor and a quasi-1D magnetic nanowire. The quasi-1D magnetic nanowire is coupled to or embedded in the superconductor to produce a self-contained interaction resulting in a spatially separated pair of Majorana fermions. The pair of Majorana fermions corresponds to the topological superconductor and each of the pair of the Majorana fermions are localized near a respective endpoint of the nanowire.

Claims (19)

1. A magnetic topological nanowire structure, comprising:

a superconductor; and

a quasi-1D magnetic nanowire that is coupled to or embedded in the superconductor to produce a self-contained interaction resulting in a spatially separated pair of Majorana fermions, wherein the pair of Majorana fermions correspond to the magnetic topological nanowire structure and wherein each of the pair of the Majorana fermions are located near a respective endpoint of the quasi-1D magnetic nanowire.

2. The magnetic topological nanowire structure of claim 1 , wherein the resulting pair of Majorana fermions form a topological qubit.

3. The magnetic topological nanowire structure of claim 1 , wherein the quasi-1D nanowire is ferromagnetic.

4. The magnetic topological nanowire structure of claim 1 , wherein the quasi-1D magnetic nanowire has a non-collinear or spiral magnetic texture.

5. The magnetic topological nanowire structure of claim 4 , wherein the quasi-1D magnetic nanowire is comprised of elements from the transition metal or lanthanide series or a combination thereof.

6. The magnetic topological nanowire structure of claim 1 , wherein the quasi-1D magnetic nanowire is an atomic chain.

7. The magnetic topological nanowire structure of claim 6 , wherein the atomic chain of the quasi-1D magnetic nanowire comprises a thickness of one or more atoms.

8. The magnetic topological nanowire structure of claim 1 , wherein the superconductor is an s-wave superconductor with spin-orbit coupling.

9. The magnetic topological nanowire structure of claim 8 , wherein the superconductor comprises an element or binary alloy of lead, niobium, or tantalum.

10. The magnetic topological nanowire structure of claim 8 , wherein the superconductor comprises an element that results in a s-wave superconductor.

11. The magnetic topological nanowire structure of claim 1 , wherein coupling the quasi-1 D magnetic nanowire to the superconductor comprises embedding the quasi-1 D nanowire within the superconductor.

12. The magnetic topological nanowire structure of claim 1 , wherein coupling the quasi-1 D magnetic nanowire to the superconductor comprises placing the quasi-1 D nanowire in physical contact with the exterior of the superconductor.

13. The magnetic topological nanowire structure of claim 12 , wherein the quasi-1 D magnetic nanowire is placed in a zigzag, circular, ellipse, cross or square pattern on the surface of the superconductor.

14. A magnetic topological structure, comprising:

a superconductor; and

a two-dimensional magnetic thin film region coupled to or embedded in the superconductor to produce self-contained interactions resulting in a band of Majorana fermions circulating around the edge of the two-dimensional thin film region.

15. The magnetic topological structure of claim 14 , wherein the two-dimensional magnetic thin film region is ferromagnetic.

Assignments (2)
CONFIRMATORY LICENSE Recorded Nov 14, 2016
From: PRINCETON UNIVERSITY
To: NAVY, SECRETARY OF THE UNITED STATES OF AMERICA
Reel/Frame 040640/0975 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 14, 2015
From: YAZDANI, ALI; BERNEVIG, ANDREI
To: THE TRUSTEES OF PRINCETON UNIVERSITY
Reel/Frame 036556/0602 →
Continuity (2)
Provisional Application 62032921 · Aug 4, 2014
Related Publication 20160035470A1 · Feb 4, 2016
Cited By (2)
US 12,317,759 US 12,718,975