BCS theory of superconductivity: the world's largest Madoff scheme?
arXiv:0901.4099 · doi:10.1088/0031-8949/80/03/035702
Abstract
The time-tested BCS theory of superconductivity is generally accepted to be the correct theory of conventional superconductivity by physicists and, by extension, by the world at large. In a different realm of human activity, until very recently Bernard Madoff's time-tested investment operation was generally accepted as true and legitimate in the financial world. Madoff's Ponzi scheme, where old investors were being paid off by funds contributed by new investors, was fundamentally flawed, yet was able to thrive for decades because of many vested interests. `Red flags' suggesting its illegitimacy were ignored. Here I suggest that the same is true of BCS theory. There are an increasing number of `red flags' that strongly suggest the possibility that BCS theory may be fundamentally flawed. For example, an ever-growing number of superconductors are being classified as `unconventional', not described by the conventional BCS theory and each requiring a different physical mechanism. In addition, I argue that BCS theory is unable to explain the Meissner effect, most fundamental property of superconductors. There are several other phenomena in superconductors for which BCS theory provides no explanation, and BCS theory has proven unable to predict any new superconducting compounds. From one day to the next, Madoff's edifice came crashing down and a staggering 50 billion dollars evaporated, and I suggest that this may also be the fate of BCS theory. I outline an alternative theory to conventional BCS theory proposed to apply to all superconductors, `conventional' as well as `unconventional', that offers an explanation for the Meissner effect as well as for other puzzles and provides clear guidelines in the search for new high temperature superconductors.
References in corpus (6)
- Spin Meissner Effect in Superconductors and the Origin of the Meissner Effect
- The missing angular momentum of superconductors
- Pressure-Induced Superconductivity in Sc to 74 GPa
- Hole superconductivity in Arsenic-Iron compounds
- Do superconductors violate Lenz's law? Body rotation under field cooling and theoretical implications
- Charge expulsion, Spin Meissner effect, and charge inhomogeneity in superconductors
Cited by in corpus (15)
- Superconducting hydrides under pressure
- Superconductivity in the elements, alloys and simple compounds
- Absence of magnetic evidence for superconductivity in hydrides under high pressure
- Flux trapping in superconducting hydrides under high pressure
- Spin-split states in aromatic molecules and superconductors
- Hole core in superconductors and the origin of the Spin Meissner effect
- Does the Meissner effect violate the second law of thermodynamics? Comment on "The Law of Entropy Increase and the Meissner Effect" by A. Nikulov
- Belief in thermodynamics has provoked false thermodynamics of superconductors
- Phase separation in high-T cuprates
- Why holes are not like electrons. IV. Hole undressing and spin current in the superconducting state
- Spherical agglomeration of superconducting and normal microparticles with and without applied electric field
- Absence of Josephson coupling between certain superconductors
- Berry connection from many-body wave functions and superconductivity: Calculations by the particle number conserving Bogoliubov-de Gennes equations
- Semi-classical understanding of flux quantization in superconductors
- Berry connection from many-body wave functions and superconductivity: Circuit quantization for superconducting qubits and absence of a dissipative quantum phase transition in Josephson junctions