The increasing demand for nearline storage capacity in data centers calls for a continued enhancement in hard disk drive recording density far beyond one terabit per square inch. The thermal stability limit forces the drive manufacturers to develop new concepts in order to achieve this in the long term. Potential solutions are microwave-assisted magnetic recording (MAMR), heat-assisted magnetic recording (HAMR) and bit-patterned media (BPM). A simple example of BPM based on sputter-deposited Co/Pd multilayers and prepatterned substrates at hypothetical recording densities up to one terabit per square inch was studied by magnetic force microscopy (MFM). This system achieved promising results at lower densities, but an actual application for...
Continuous device downscaling, growing integration densities of the nanoscale electronics and develo...
Heated dot magnetic recording (HDMR) provides a path to increase the areal density of magnetic recor...
The concept of percolated perpendicular media (PPM) for magnetic data storage is expected to surpass...
The increasing demand for nearline storage capacity in data centers calls for a continued enhancemen...
L10-ordered FePt thin films are a leading candidate for next-generation magnetic recording, such as ...
Recently, high magnetic anisotropy materials have received much attention to meet the demands of app...
The FePt and FePtCu thin films with graded anisotropy and titled anisotropy are utilized to solve b...
FePt with ordered L10 structure is a promising material for high-density magnetic recording media be...
213 p.Chemically ordered Ll0 (CuAu-I type structure) FePt films with an fct (face centered tetragona...
Until some potentially superior technology such as perpendicular recording becomes practical, severa...
L10 - chemically ordered FePt thin films with large perpendicular magnetic anisotropy (PMA) of up to...
Hard-magnetic L10 phase FePt has been demonstrated as a promising candidate for future nanomagnetic ...
Nanostructured magnetic materials have unique properties that are different from bulk materials. The...
University of Minnesota Ph.D. dissertation. February 2013. Major: Electrical Engineering. Advisor: P...
In order to solve the trilemma problems that perpendicular magnetic recording is facing, advanced ap...
Continuous device downscaling, growing integration densities of the nanoscale electronics and develo...
Heated dot magnetic recording (HDMR) provides a path to increase the areal density of magnetic recor...
The concept of percolated perpendicular media (PPM) for magnetic data storage is expected to surpass...
The increasing demand for nearline storage capacity in data centers calls for a continued enhancemen...
L10-ordered FePt thin films are a leading candidate for next-generation magnetic recording, such as ...
Recently, high magnetic anisotropy materials have received much attention to meet the demands of app...
The FePt and FePtCu thin films with graded anisotropy and titled anisotropy are utilized to solve b...
FePt with ordered L10 structure is a promising material for high-density magnetic recording media be...
213 p.Chemically ordered Ll0 (CuAu-I type structure) FePt films with an fct (face centered tetragona...
Until some potentially superior technology such as perpendicular recording becomes practical, severa...
L10 - chemically ordered FePt thin films with large perpendicular magnetic anisotropy (PMA) of up to...
Hard-magnetic L10 phase FePt has been demonstrated as a promising candidate for future nanomagnetic ...
Nanostructured magnetic materials have unique properties that are different from bulk materials. The...
University of Minnesota Ph.D. dissertation. February 2013. Major: Electrical Engineering. Advisor: P...
In order to solve the trilemma problems that perpendicular magnetic recording is facing, advanced ap...
Continuous device downscaling, growing integration densities of the nanoscale electronics and develo...
Heated dot magnetic recording (HDMR) provides a path to increase the areal density of magnetic recor...
The concept of percolated perpendicular media (PPM) for magnetic data storage is expected to surpass...