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Lecture
Lithography: Fabrication Extended
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Related lectures (32)
Lithography: Resist Properties and Exposure Methods
Covers lithography concepts, resist properties, exposure methods, and pattern transfer techniques.
Micro and Nanofabrication for Optomechanics
Explores the importance of micro- and nanofabrication in optomechanics, covering key processes and challenges in device fabrication.
Lithography: Scanning Probe Lithography
Delves into scanning probe lithography, exploring its principles and potential applications in nano-fabrication.
Thermal Scanning Probe Lithography: Nanometer Scale Patterning
Explores Thermal Scanning Probe Lithography history, Millipede system, AFM writing, 3D patterning, and emerging nanopatterning techniques.
Lithography: Photoresist Sensitivity and Modulation Transfer Function
Discusses photoresist properties in lithography resolution and the role of the optical transfer function.
Interferometers: Applications and Lithography
Explores interferometers' applications, lithography techniques, and nanostructure creation using interference lithography and EUV interference lithography.
Nanoscience Fabrication Methods
Covers top-down methods in nanoscience, including lithography and nanoimprint lithography for fabricating nanostructures and organic solar cells.
Clip Mask Aligner Lithography
Covers UV lithography using a clip mask aligner for micro and nanofabrication.
Nanofabrication: Techniques and Challenges
Explores nanofabrication techniques, challenges, and the use of silicon wafers.
Micro and Nanofabrication: Basics and Techniques
Covers the basics of micro and nano fabrication techniques for MEMS devices.
Scanning Probe Microscopy: Advanced Modes
Explores advanced modes of AFM, high-speed imaging, MEM, SNOM, and a variety of SPM techniques.
Stencil Lithography: Nanometer Scale Patterning
Explores stencil lithography for nanometer scale patterning and its challenges.
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