Superior bit error rate and jitter due to improved switching field distribution in exchange spring magnetic recording media
نویسندگان
چکیده
We report two effects that lead to a significant reduction of the switching field distribution in exchange spring media. The first effect relies on a subtle mechanism of the interplay between exchange coupling between soft and hard layers and anisotropy that allows significant reduction of the switching field distribution in exchange spring media. This effect reduces the switching field distribution by about 30% compared to single-phase media. A second effect is that due to the improved thermal stability of exchange spring media over single-phase media, the jitter due to thermal fluctuation is significantly smaller for exchange spring media than for single-phase media. The influence of this overall improved switching field distribution on the transition jitter in granular recording and the bit error rate in bit-patterned magnetic recording is discussed. The transition jitter in granular recording for a distribution of Khard values of 3% in the hard layer, taking into account thermal fluctuations during recording, is estimated to be a = 0.78 nm, which is similar to the best reported calculated jitter in optimized heat-assisted recording media.
منابع مشابه
مشخصه های آماری ذرات ضبط مغناطیسی
In magnetic recording media, the remanent magnetization loop, Mr(H)has some parameters, which explain the prperties of the medium in view of the storage density and signal-to-noise ratio. It is necessary to find the mechanism of Mr variations from the statistical characteristics of the system. We have prepared samples of single-domain ascicolar iron particles with 0.3 length, and the oriented...
متن کاملDesign, Fabrication, Optimization and Verification of FePt based Bit Patterned Media
s group has been supported by INSIC and recording industry for years and may be the only university group in US with the demonstrated and integrated capabilities to fabricate and investigate FePt based bit patterned media. We developed seedlayer/underlayer(s) and a low-substrate-temperature (350C) process to grow smooth continuous L10 FePt film on glass substrate with relatively large Hk (~ 80k...
متن کاملThe thermodynamic limits of magnetic recording
Related Articles Thermal issues and their effects on heat-assisted magnetic recording system (invited) J. Appl. Phys. 111, 07B701 (2012) Timeand vector-resolved Kerr microscopy of hard disk writers Appl. Phys. Lett. 99, 232503 (2011) Origin of magnetic switching field distribution in bit patterned media based on pre-patterned substrates Appl. Phys. Lett. 99, 062502 (2011) High density multi-lev...
متن کاملGeneralized Partial Response Targets for Perpendicular Recording with Jitter Noise
In this paper, we propose new generalized partial response (GPR) targets for perpendicular recording whose transition response is modeled as an error function, and compare their performance with the partial response (PR) targets both in the presence and in the absence of jitter noise. Regardless of any jitter noise amount, results indicate that the GPR targets outperform the PR targets, especi...
متن کاملSignal Processing for Bit-Patterned Media and Heat-Assisted Magnetic Recording Systems with Media Noise
With the advent of the information age, the demand for larger storage capacity is ever increasing. However, the need to continue scaling conventional magnetic recording technologies to higher areal densities has led to physical and engineering limits which are difficult to overcome. New magnetic recording technologies are required. Bit-patterned media recording (BPMR) and heat-assisted magnetic...
متن کامل