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In this work, we have presented high sensitive nanoSQUID fabricated into two different types, hysteretic and nonhysteretic (I-V characteristics). Non-hysteretic SQUID is easy/simple to fabricate and reproduce. Hence it is more reliable for practical applications. We have reported the nanoparticle detection via magnetisation measurement using non-hysteretic SQUID. Due to the recent successful efforts devoted to finely arrange the nano-particles within the sensor loop, the information provided here is very useful to optimize the sensor performance in view of most nano-magnetism applications.

Produktbeschreibung
In this work, we have presented high sensitive nanoSQUID fabricated into two different types, hysteretic and nonhysteretic (I-V characteristics). Non-hysteretic SQUID is easy/simple to fabricate and reproduce. Hence it is more reliable for practical applications. We have reported the nanoparticle detection via magnetisation measurement using non-hysteretic SQUID. Due to the recent successful efforts devoted to finely arrange the nano-particles within the sensor loop, the information provided here is very useful to optimize the sensor performance in view of most nano-magnetism applications.
Autorenporträt
My native place is Perane (Pune) INDIA. I have earned my Doctoral degree in ¿International PhD programme in novel technologies for materials, sensors and imaging¿ from Department of Physics, Naples University ¿Federico-II¿, Italy. Now I am working as Marie Curie (ITN) SOPARANO postdoctoral fellow in CRISMAT CNRS laboratory in Caen, France.