R. E. George

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M. Prunnila2
L. Roschier2
J. R. Prance2
D. Gunnarsson2
M. Sarsby2
2M. Prunnila
2L. Roschier
2J. R. Prance
2D. Gunnarsson
2M. Sarsby
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Cooling nanoelectronic structures to millikelvin temperatures presents extreme challenges in maintaining thermal contact between the electrons in the device and an external cold bath. It is typically found that when nanoscale devices are cooled to ∼ 10 mK the electrons are significantly overheated. Here we report the cooling of electrons in nanoelectronic(More)
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