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Engineering the ferromagnetic domain size for optimized imaging of the pinned uncompensated spins in exchange-biased samples by magnetic force microscopy
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N. Joshi Et Al. , "Engineering the ferromagnetic domain size for optimized imaging of the pinned uncompensated spins in exchange-biased samples by magnetic force microscopy," Applied Physics Letters , vol.98, no.8, 2011

Joshi, N. Et Al. 2011. Engineering the ferromagnetic domain size for optimized imaging of the pinned uncompensated spins in exchange-biased samples by magnetic force microscopy. Applied Physics Letters , vol.98, no.8 .

Joshi, N., Özer, S., Ashworth, T., Stickar, P., Romer, S., Marioni, M., ... Hug, H.(2011). Engineering the ferromagnetic domain size for optimized imaging of the pinned uncompensated spins in exchange-biased samples by magnetic force microscopy. Applied Physics Letters , vol.98, no.8.

Joshi, N.R. Et Al. "Engineering the ferromagnetic domain size for optimized imaging of the pinned uncompensated spins in exchange-biased samples by magnetic force microscopy," Applied Physics Letters , vol.98, no.8, 2011

Joshi, N.R. Et Al. "Engineering the ferromagnetic domain size for optimized imaging of the pinned uncompensated spins in exchange-biased samples by magnetic force microscopy." Applied Physics Letters , vol.98, no.8, 2011

Joshi, N. Et Al. (2011) . "Engineering the ferromagnetic domain size for optimized imaging of the pinned uncompensated spins in exchange-biased samples by magnetic force microscopy." Applied Physics Letters , vol.98, no.8.

@article{article, author={N.R. Joshi Et Al. }, title={Engineering the ferromagnetic domain size for optimized imaging of the pinned uncompensated spins in exchange-biased samples by magnetic force microscopy}, journal={Applied Physics Letters}, year=2011}