Title :
Thermal Aspects and Static/Dynamic Protrusion Behaviors in Heat-Assisted Magnetic Recording
Author :
Schreck, Erhard ; Dongbo Li ; Canchi, Sripathi V. ; Lidu Huang ; Singh, Gaurav Pratap ; Marchon, Bruno ; Richter, H.J. ; Stipe, Barry ; Staffaroni, Matteo
Author_Institution :
HGST, Western Digital Co., San Jose, CA, USA
Abstract :
The pressure of increasing the areal density of magnetic storage media demands the leap to new storage technologies. Among the prime candidates, available is heat-assisted magnetic recording technology. Among many aspects available in this paper, we will focus on newly introduced thermal aspects and protrusions due to additional heat sources in the recording head and recording media. As needed with the existing head protrusions such as thermal flying height control and writer pole tip protrusion, we will present the data, which is based on thermomechanical modeling and experiments during flying and static conditions. The ongoing debate of comparing flying versus nonflying conditions remains a critical issue but needs to be accepted as an imperfect but valuable way of exploring the new protrusion effects. We will address the important issue of the differences between the pure thermal and the associated mechanical time constants.
Keywords :
magnetic storage; thermomagnetic recording; thermomechanical treatment; areal density; heat source; heat-assisted magnetic recording technology; magnetic storage media; static-dynamic head protrusion behavior; thermal aspect; thermal flying height control; thermomechanical modeling; writer pole tip protrusion; Heat-assisted magnetic recording; Heating; Magnetic heads; Media; Temperature measurement; Transient analysis; Dynamic; head–disk interface; heat-assisted magnetic recording (HAMR); magnetic recording; protrusion; static;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2013.2283715