Title: SuperStuff
1SuperStuff Lecture 2 Informal Seminar Series
JC Séamus Davis jcdavis_at_ccmr.cornell.edu
http//people.ccmr.cornell.edu/jcdavis/ Every
Tue., 3.00 PM, AMPEL 311, Fall 2009 Independent
of the microscopic interactions leading to their
formation, supergasses, superfluids,
superconductors and supersolids exhibit the same
macroscopic quantum phenomena including
persistent currents, circulation (or flux)
quantization, quantized vortices, vortex
crystallization, London dynamics and Josephson
Effects. We will review, informally, the
history of these ideas, their experimental
validation, and the present state of research
into such superstuff.
i D. R. Tilley, J. Tilley, Superfluidity and
Superconductivity (IOP Publishing Ltd., UK, ed.
3, 1990).
2Superfluid 4He 3He
4He
3He
4He
2-3He
Bose Einstein Condensation
Cooper Pair Condensation
3Macroscopic Quantum Phenomena of a Superfluid
Signatures Macroscopic Quantum
State Superflow Circulation
Quantization Quantized Vortices Persistent
Mass Currents Critical Velocity Josephson
Effects
4Macroscopic Quantum Phenomena of a Superfluid
Signatures Macroscopic Quantum
State Superflow Circulation
Quantization Quantized Vortices Persistent
Mass Currents Critical Velocity Josephson
Effects
5Torque Measurement of Persistent Currents
John Reppy / Cornell
6Torque Measurement of Persistent Currents
7Torque Measurement of Persistent Currents
8Cool Under Rotation at Angular Speed W
4He
3He
9Persistent Current Gyroscope
10Persistent Current Gyroscope
11Persistent Current Gyroscope
12Persistent Current Gyroscope
13Persistent Current Gyroscope
14Persistent Current Gyroscope
15Persistent Current Gyroscope
16Persistent Superfluid Currents
4He
3He
17Macroscopic Quantum Phenomena of a Superfluid
Signatures Macroscopic Quantum
State Superflow Circulation
Quantization Quantized Vortices Persistent
Mass Currents Critical Velocity Josephson
Effects
18Circulation Quantization in Superfluid 4He 3He
4He
3He
One needs to work at maximum superfluid density
and minimum dissipation T?0
19Circulation Quantization in Superfluid 4He
Joe Vinen / Birmingham
The Detection of Single Quanta of Circulation in
Liquid Helium II W. F. Vinen Source Proceedings
of the Royal Society of London. Series A,
Mathematical and Physical Sciences, Vol. 260, pp
218 (Feb. 21, 1961)
20Ultra-fine Vibrating Wire
B
21Current Pulse
B
I
F
22Current Pulse
B
I
F
23Cool Under Rotation W and then Halt T?0
24Cool Under Rotation W and then Halt T?0
25Magnus Force from Circulating Current
B
26Magnus Force from Circulating Current
B
27Magnus Force from Circulating Current
B
28Superfluid 4He Quantized Circulation
B
29Superfluid 4He Quantized Circulation
The Detection of Single Quanta of Circulation in
Liquid Helium II W. F. Vinen Source Proceedings
of the Royal Society of London. Series A,
Mathematical and Physical Sciences, Vol. 260, pp
218 (Feb. 21, 1961)
30Circulation Quantization in Superfluid 4He 3He
4He
3He
One needs to work at maximum superfluid density
and minimum dissipation T?0
31Circulation Quantization in Superfluid 3He
32(No Transcript)
33SuperStuff Informal Seminar Series JC Séamus
Davis jcdavis_at_ccmr.cornell.edu
http//people.ccmr.cornell.edu/jcdavis/ Every
Tue., 3.00 PM, AMPEL 311, Fall 2009 NEXT
WEEK Phase Slippage