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Lecture
Focused Ion Beam: Principles and Applications
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Related lectures (32)
Focused Ion Beam: Principles and Applications
Explores the principles and applications of Focused Ion Beam (FIB) technology, including imaging, milling, and 3D microscopy.
Sputtering: Ion Target Interactions
MOOC: Micro and Nanofabrication (MEMS)
Examines ion-target interactions in PVD sputtering processes, covering compound deposition, surface damage, and factors influencing target ejection rates.
Plasma Focused Ion Beam: Applications and Techniques
Explores Plasma Focused Ion Beam technology, covering high-precision imaging, material deposition, and automated system checks.
Focused Ion Beam: Principles and Applications
Explores the principles and applications of Focused Ion Beam technology, including ion-solid interactions, ion milling, and nanofabrication.
Thin-Film Processing
Explores thin-film processing techniques, including CVD, ALD, and plasma interactions, emphasizing their advantages and applications.
PVD 7: Other Techniques
MOOC: Micro and Nanofabrication (MEMS)
Explores ion plating, MBE, and PLD techniques in thin film fabrication.
MEMS & Cleanroom: Thin Material Layers and Vapor Creation
Introduces MEMS, Cleanroom technology, thermal oxidation, vapor creation, and film formation principles.
Physical Vapor Deposition: Principles and Applications
Explores the principles and applications of Physical Vapor Deposition (PVD) in microfabrication technologies, covering topics like metal microstructure creation and sputtering efficiency.
Film Growth: Growth Modes and Crystal Structure
MOOC: Micro and Nanofabrication (MEMS)
Explores growth modes in film growth and crystal structure determination based on materials used.
Thin-Film Processing: Plasma Deposition
Explores plasma-enhanced chemical vapor deposition for thin-film processing and its impact on film properties and material quality.
Sputtering: Plasma Formation and Thin Film Deposition
MOOC: Micro and Nanofabrication (MEMS)
Covers sputtering, plasma creation, and thin film deposition processes.
Sputtering: Film Growth and Control Parameters
MOOC: Micro and Nanofabrication (MEMS)
Covers the sputtering process, parameters influencing film quality, and advantages over thermal evaporation.
Physical Vapor Deposition: Basics and Applications
MOOC: Micro and Nanofabrication (MEMS)
Explores Physical Vapor Deposition techniques, including vapor creation and flux towards the substrate in micro and nanofabrication.
Ion Beam Etching
MOOC: Micro and Nanofabrication (MEMS)
Introduces ion beam etchers, combining physical sputtering with chemical activity.
Micro and Nanofabrication for Optomechanics
Explores the importance of micro- and nanofabrication in optomechanics, covering key processes and challenges in device fabrication.
Thin Films: Deposition and Growth
Explores thin film preparation, growth mechanisms, organic film considerations, and deposition techniques in electronics.
Optical Microscopy: Techniques and Applications
Explores optical microscopy techniques, dimension measurements, surface profiling, electrical characterization of MEMS, and advanced microscopy techniques.
High Resolution He Ion Microscopy
Covers the ALIS He ion source and its application in high resolution microscopy, providing remarkable surface detail and material contrast.
Sputtering in CMi
MOOC: Micro and Nanofabrication (MEMS)
Covers the operation of a cluster sputtering tool and the process of changing sputter targets.
SEM Basics: Imaging Parameters
Explores SEM basics, including imaging parameters, signal generation, and challenges.
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