Authors:
Doerner, M
Bian, XP
Madison, M
Tang, K
Peng, QZ
Polcyn, A
Arnoldussen, T
Toney, MF
Mirzamaani, M
Takano, K
Fullerton, E
Margulies, D
Schabes, M
Rubin, K
Pinarbasi, M
Yuan, S
Parker, M
Weller, D
Citation: M. Doerner et al., Demonstration of 35 Gbits/in(2) in media on glass substrates, IEEE MAGNET, 37(2), 2001, pp. 1052-1058
Authors:
Madison, M
Arnoldussen, T
Pinarbasi, M
Parker, M
Doerner, M
Bhatia, CS
Call, D
Li, JS
Dorius, L
Tang, K
Ingall, L
Lee, E
Yuan, S
Schwenker, R
Tabib, J
Lauchlan, L
Raniseski, J
Smith, R
Hsiao, WC
Lin, T
Mauri, D
Zolla, H
Marinero, E
Margulies, D
Rubin, K
Fullerton, E
Weller, D
Moser, A
Citation: M. Madison et al., Design tradeoffs for beyond 20 Gb/in.(2): Using a merged notched head on advanced low noise media (invited), J APPL PHYS, 87(9), 2000, pp. 4996-5000
Citation: Z. Jin et al., A growth model for polycrystalline thin film media: Comparison of bicrystal and unicrystal grain structures, IEEE MAGNET, 36(5), 2000, pp. 2294-2296
Authors:
Arnoldussen, TC
Mirzamaani, M
Doerner, M
Tang, K
Bian, X
Feng, J
Gatherwright, M
Citation: Tc. Arnoldussen et al., Correlation of thermal stability and signal-to-noise ratio of thin film recording media, IEEE MAGNET, 36(1), 2000, pp. 92-97
Authors:
Fullerton, EE
Margulies, DT
Schabes, ME
Carey, M
Gurney, B
Moser, A
Best, M
Zeltzer, G
Rubin, K
Rosen, H
Doerner, M
Citation: Ee. Fullerton et al., Antiferromagnetically coupled magnetic media layers for thermally stable high-density recording, APPL PHYS L, 77(23), 2000, pp. 3806-3808