Publication | Open Access
1.7 Gbit/in.2 gray-scale continuous-phase-change femtosecond image storage
64
Citations
21
References
2014
Year
HolographyOptical MaterialsEngineeringMicroscopyCrystal Growth TechnologyFemtosecond Laser PulsesOptoelectronic DevicesHolographic MethodPhase Change MemoryDigital HolographyOptical ComputingGe2sb2te5 Thin FilmOptical PropertiesMultimedia StorageComputational ImagingMaterials SciencePhotonicsPhysicsCrystalline DefectsComputational Optical ImagingApplied PhysicsCrystallized SpotIn-storage Computing
We demonstrate high-density, multi-level crystallization of a Ge2Sb2Te5 thin film using tightly focused femtosecond laser pulses. The submicron spots with 8 distinct data storage states are written on a 1.08 μm square grid. The significant change in reflectivity of every specific state of crystallized spot allows easy optical reading and identification. As a demonstration, two gray-scale images are written into the storage medium. Our results open up potential applications in ultra-fast two-dimensional parallel cognitive computing and holography.
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