Embodiments of the invention achieve a decrease in electric power consumption while ensuring high recording density and high reliability in a magnetic disk apparatus. In one embodiment, a magnetic disk apparatus comprises a rotatable magnetic disk and a magnetic head slider to be able to fly above a surface of the magnetic disk. The magnetic head slider comprises an air bearing surface, by which the magnetic head slider is caused to fly and come near to the rotating surface of the magnetic disk with a predetermined spacing therebetween, recording and reproducing elements to perform at least one of recording on and reproduction from the magnetic disk, and a heating device to adjust a distance between the recording and reproducing elements and the surface of the magnetic disk. The heating device is mounted such that heating thereof causes a part of the air bearing surface to expand and project to increase a distance between the recording and reproducing elements and the surface of the magnetic disk.

 
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< Perpendicular magnetic recording head with dynamic flying height heating element disposed below turns of a write coil

< Magnetic recording head with resistive heating element located near the write coil

> Head-gimbal assembly including a flexure tongue with stand-offs arranged to facilitate lateral light entry

> Disk drive device, actuator lock mechanism, inertia latch mechanism and inertia lever

~ 00611