Solid State Research (Physics and Astronomy)

For the first time, it is possible to produce crystalline layers of precious metals that consist of a single atomic layer and which are semiconducting

A new form of spectroscopy provides insights for the development of resistance-free current transport at ambient temperature

Light controlled current transport by charged atoms, now demonstrated for the first time, makes new applications conceivable

Close to absolute zero, the particles exhibit their quantum nature

A measurement of electron mass which is more precise by a factor of 13 could have an impact on the fundamental laws of physics

For the first time, it is possible to produce crystalline layers of precious metals that consist of a single atomic layer and which are semiconducting

A new form of spectroscopy provides insights for the development of resistance-free current transport at ambient temperature

Light controlled current transport by charged atoms, now demonstrated for the first time, makes new applications conceivable

Close to absolute zero, the particles exhibit their quantum nature

A measurement of electron mass which is more precise by a factor of 13 could have an impact on the fundamental laws of physics

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