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"Electron-Beam Detection of Bits Reversibly Recorded on Epitaxial InSe/GaSe/Si Phase-Change Diodes", Jpn. J. Appl. Phys. 45, 2580 (2006).
"Phase-change recording medium that enables ultrahigh-density electron-beam data storage," Appl. Phys. Lett. 86, 051902 (2005).
"Morphing Memory: Superfast atom shuffling inspires data-storage alternatives" by Peter Weiss, Science News 167, 363 (2005).
"Memory material is spot-on" in Nature's Nanozone.
"A Phase Change in High-Density Data Storage", in AIP's Physics New Update 717.
"Material promises denser DVDs," in Technical Research News
"Neuer Meilenstein bei hoher Speicherdichte von Daten erreicht", STP-Gateway HighTech online.
"Reversible Optical Recording on Epitaxial Indium Selenide Phase-Change Media," talk given at Hitachi Global Storage Labs, June 2004.
"Heteroepitaxy of InSe/GaSe on Si(111) Substrates," J. Jasinski, Z. Liliental-Weber, A. Chaiken, G.A. Gibson, K. Nauka, C.C. Yang, and R. Bicknell, MRS Symposium GG: "Advanced Characterization Techniques for Data Storage Materials," MRS Proc. 803, 15 (2004).
"Reversible Optical Recording on Epitaxial Indium Selenide Phase-Change Media," presented at Fall 2003 MRS meeting in MRS Symposium HH: Phase Change and Nonmagnetic Materials for Data Storage" symposium, December 2003.
"Ultrahigh Density Data Storage using Epitaxial Phase-Change Media Diodes", talk given at 11th Foresight Nanotechnology Conference, October 2003.
"Ultrahigh Density Optical Recording on Epitaxial InSe/GaSe Phase-Change Media Films", talk given at Northern California Chapter meeting of the American Vacuum Society, June 2003.
"Structural and Electronic Properties of Amorphous and Polycrystalline In2Se3 Films," published as J. Appl. Phys. 94, 2390 (2003). 12 figures. (436K) Also available at the arXiv.org website.
"Crystal Structure of Kappa In2Se3," Appl. Phys. Lett. 81, 4356 (2002). 3 figures. (263K)
"Properties of the Kappa-In2Se3," paper presented at International Conference on Semiconductor Physics 2002. 6 figures. (123K)
A patent on the indium selenide media, another one on indium selenide photoconductive devices made by lateral overgrowth and another one on the complete Atomic Resolution Storage system.
A patent on near-field optical recording on phase-change diodes with electrical readout and a related patent on a slightly more complicated structure
Scientific American article about HP's Atomic Resolution Storage project
A related modelling effort at Oxford University has produced two publications: "Modeling In-Se amorphous alloys", Phys. Rev. B 71, 184203 (2005) and "Modeling the amorphous-to-crystalline phase transformation in network materials," Phys. Rev. B 71, 235309 (2005).
Most figures in these papers have been made using the excellent grace graphics and data analysis package in conjunction with the XFIG drawing program. And of course LaTeX.
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alison@exerciseforthereader.org
(Alison Chaiken)
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