IP Library Granted Patent US 7,547,661
Granted Patent B2
US 7,547,661 · App. 10/925,479 · Granted Jun 16, 2009

Enhanced pinning in mixed rare earth-123 films

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Quick Facts
Patent No.
US 7,547,661
App. No.
10/925,479
Granted
Jun 16, 2009
Kind
B2
Abstract

An superconductive article and method of forming such an article is disclosed, the article including a substrate and a layer of a rare earth barium cuprate film upon the substrate, the rare earth barium cuprate film including two or more rare earth metals capable of yielding a superconductive composition where ion size variance between the two or more rare earth metals is characterized as greater than zero and less than about 10×10 −4 , and the rare earth barium cuprate film including two or more rare earth metals is further characterized as having an enhanced critical current density in comparison to a standard YBa 2 Cu 3 O y composition under identical testing conditions.

Claims (21)

1. A thin film superconductive article comprising:

a substrate; and,

a thick film layer of a rare earth barium cuprate film comprised of Dy 0.25 Ho 0.50 Y 0.25 Ba 2 Cu 3 O y upon the substrate, the Dy 0.25 Ho 0.50 Y 0.25 Ba 2 Cu 3 O y film having a thickness of greater than about 600 nm and yielding a superconductive composition where ion size variance between the two or more rare earth metals is characterized as greater than zero and less than about 0.5×10 −4 , wherein the rare earth barium cuprate film is further characterized as having an enhanced critical current density in comparison to a standard YBa 2 Cu 3 O y composition under identical testing conditions.

2. A thin film superconductive article comprising:

a substrate; and,

a thick film layer of rare earth barium cuprate film comprised of Dy 0.3 Ho 0.55 Y 0.15 Ba 2 Cu 3 O y upon the substrate, the Dy 0.3 Ho 0.55 Y 0.15 Ba 2 Cu 3 O y film having a thickness of greater than about 600 nm and yielding a superconductive composition where ion size variance between the two or more rare earth metals is characterized as greater than zero and less than about 10×10 −4 , wherein the rare earth barium cuprate film including two or more rare earth metals is further characterized as having an enhanced critical current density in comparison to a standard YBa 2 Cu 3 O y composition under identical testing conditions.

3. A thin film superconductive article comprising:

a substrate; and,

a thick film layer of rare earth barium cuprate film comprised of Dy 0.42 Ho 0.24 Y 0.2 Er 0.16 Ba 2 Cu 3 O y upon the substrate, the Dy 0.42 Ho 0.24 Y 0.2 Er 0.16 Ba 2 Cu 3 O y film having a thickness of greater than about 600 nm and yielding a superconductive composition where ion size variance between the two or more rare earth metals is characterized as greater than zero and less than about 10×10 −4 , wherein the rare earth barium cuprate film including two or more rare earth metals is further characterized as having an enhanced critical current density in comparison to a standard YBa 2 Cu 3 O y composition under identical testing conditions.

4. A thin film superconductive article comprising:

substrate; and,

a thick film layer of rare earth barium cuprate film comprised of Y 0.29 Gd 0.09 Dy 0.62 Ba 2 Cu 3 O y upon the substrate, the Y 0.29 Gd 0.09 Dy 0.62 Ba 2 Cu 3 O y film having a thickness of greater than about 600 nm and yielding a superconductive composition where ion size variance between the two or more rare earth metals is characterized as greater than zero and less than about 10×10 −4 , wherein the rare earth barium cuprate film including two or more rare earth metals is further characterized as having an enhanced critical current density in comparison to a standard Yba 2 Cu 3 O y composition under identical testing conditions.

5. A thin film superconductive article of comprising:

a substrate; and,

a thick film layer of rare earth barium cuprate film comprised of Y 0.13 Gd 0.04 Dy 0.83 Ba 2 Cu 3 O y upon the substrate, the Y 0.13 Gd 0.04 Dy 0.83 Ba 2 Cu 3 O y film having a thickness of greater than about 600 nm and yielding a superconductive composition where ion size variance between the two or more rare earth metals is characterized as greater than zero and less than about 10×10 −4 , wherein the rare earth barium cuprate film including two or more rare earth metals is further characterized as having an enhanced critical current density in comparison to a standard Yba 2 Cu 3 O y composition under identical testing conditions.

6. A thin film superconductive The article comprising:

a substrate; and,

a thick film layer of rare earth barium cuprate film comprised of Dy 0.42 Ho 0.24 Y 0.2 Er 0.16 Ba 2 Cu 3 O y upon the substrate, the Dy 0.42 Ho 0.24 Y 0.2 Er 0.16 Ba 2 Cu 3 O y film yielding a superconductive composition where ion size variance between the two or more rare earth metals is characterized as greater than zero and less than about 0.5 ×10 −4 , wherein the rare earth barium cuprate film including two or more rare earth metals is further characterized as having an enhanced critical current density in comparison to a standard YBa 2 Cu 3 O y composition under identical testing conditions.

7. A thin film superconductive article comprising:

a substrate; and,

a thick film layer of rare earth barium cuprate film comprised of Y 0.13 Gd 0.04 Dy 0.83 Ba 2 Cu 3 O y upon the substrate, the Y 0.13 Gd 0.04 Dy 0.83 Ba 2 Cu 3 O y film yielding a superconductive composition where ion size variance between the two or more rare earth metals is characterized as greater than zero and less than about 0.5 ×10 −4 , wherein the rare earth barium cuprate film including two or more rare earth metals is further characterized as having an enhanced critical current density in comparison to a standard YBa 2 Cu 3 O y composition under identical testing conditions.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 7, 2018
From: LOS ALAMOS NATIONAL SECURITY, LLC
To: TRIAD NATIONAL SECURITY, LLC
Reel/Frame 047446/0849 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 18, 2006
From: REGENTS OF THE UNIVERSITY OF CALIFORNIA, THE
To: LOS ALAMOS NATIONAL SECURITY, LLC
Reel/Frame 017919/0056 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 25, 2004
From: DRISCOLL, JUDITH L.; FOLTYN, STEPHEN R.
To: REGENTS OF THE UNIVERSITY OF CALIFORNIA, THE
Reel/Frame 015730/0877 →