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The ground state of metallic nano-structures in heavily irradiated NaCl-KBF 4
Authors:F. G. Cherkasov  S. G. L'vov  D. A. Tikhonov  H. W. Den Hartog  D. I. Vainshtein
Affiliation:1. Zavoisky Physical-Technical Institute , Russian Academy of Sciences , Kazan , 420029 , Russia;2. Solid State Physics Laboratory , University of Groningen , Nijenborgh 4, AG Groningen , NL-9747 , The Netherlands
Abstract:

ESR, NMR and static magnetic susceptibility measurements of heavily irradiated NaCl-K and NaCl-KBF 4 are reported. Up to 10% of the NaCl-molecules are transformed into metallic Na nanoparticles and Cl 2 precipitates. In addition, there are paramagnetic F- and F-aggregates, which are coupled by exchange interactions to the conduction electrons in the nanoparticles. Above 160 v K the NMR and ESR signals of NaCl-K and NaCl-KBF 4 show Pauli paramagnetism and the properties of the Na nanoparticles are similar to bulk sodium. A single ESR line is observed revealing exchange interaction between conduction electrons in the nano-particles and F-aggregates. The observed decrease of the ESR susceptibility with decreasing temperature is due to a metal-insulator transition. The conduction electrons are localized below 40 v K and the above mentioned F-aggregate centers contribute significantly to the overall ESR signal. For NaCl-KBF 4 we observed that with decreasing temperature the ESR line shifts towards lower fields due to antiferromagnetic ordering and internal magnetic fields.
Keywords:Nanoparticles  Electronic Properties  Magnetic Phase Transition  Radiation Damage
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