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Forcing Electrons into Superconducting Line
In a study in the journal Nature researchers created a "pseudo gap," in which electrons in superconducting materials line up just before flowing resistance-free. Sonya Buyting reports
Imagine a world with levitating1 cars, MRIs the size of laptops, and wide scale efficient energy distribution. These might not be pipe dreams if scientists can capitalize on a finding in the journal Nature.
Superconductors carry electricity with no loss to resistance. They are to regular conductors what a laser beam is to a light bulb. The problem is they have to be cooled to at least –100 degrees Celsius2 to work. Then the electrons spontaneously start moving in one direction and forming pairs. And now, scientists have caught a glimpse of a mysterious phase they call the “pseudo-gap” where the electrons line up just before they form pairs and start superconducting.
Louis Taillefer from the University of Sherbrooke said they used a magnetic field to align3 the electron flow: “The effect was very big. It was surprisingly big.”
If scientists can take advantage of this effect, room temperature superconductors could be a step closer. “If we do find or if we do arrive at a material that can sustain superconductivity at room temperature we will have a huge technological4 revolution, similar on a scale to the transistor5.”
1 levitating | |
v.(使)升空,(使)漂浮( levitate的现在分词 ) | |
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2 Celsius | |
adj.摄氏温度计的,摄氏的 | |
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3 align | |
vt.使成一线,结盟,调节;vi.成一线,结盟 | |
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4 technological | |
adj.技术的;工艺的 | |
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5 transistor | |
n.晶体管,晶体管收音机 | |
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