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Aalto-yliopiston sähkötekniikan korkeakoulu. Elektroniikan ja nanotekniikan laitos
URI:
http://urn.fi/URN:NBN:fi:au:cn:226113A
name
Aalto-yliopiston sähkötekniikan korkeakoulu. Elektroniikan ja nanotekniikan laitos
Authored works
Works contributed to
Affordable light-trapping metamaterials for thin-film photovoltaic cells
Amorphous molybdenum-based thin films for surface micromachining
Attitude estimation of a small spinning satellite using Kalman filter approaches
Challenges in measuring winter precipitation : advances in combining microwave remote sensing and surface observations
Characterisation of Schottky diodes and dielectric materials for millimeter wave and THz applications
CMOS radio front-end circuit blocks for millimeter-wave communications and atmospheric remote sensing receivers
Conformal and multi-band antennas for future mobile handsets and wireless sensors
Design and characterisation of monolithic millimetre-wave integrated circuits for phased-array transmitter front-end
Development of atomic layer deposition processes for nanotechnology applications
Effect of snow microstructure and subnivean water bodies on microwave radiometry of seasonal snow
Fabrication of semiconductor nanowires for optical studies
Integrated digital-intensive RF transmitters
Integrated high-speed DSP for all-digital RF transmitters
L-band microwave radiometry for the monitoring of high latitude soil processes
Light-induced degradation due to Cu precipitation in crystalline silicon : modeling and impact on PERC solar cells
Modulation frequency based RFID sensor
Nonlinear optical properties of two-dimensional layered materials
Optical properties and applications of anisotropic low-dimensional nanomaterials
Passivation, electrical properties and application to high-efficiency solar cells
Pros and cons of iron precipitates in crystalline silicon solar cells
RF-to-digital converters :
Root cause analysis and applications for fast high-resolution imaging
Spatially dispersive metasurfaces
Wire media for broadband enhancement of radiation and power transfer
Wire media for enhancement of radiative heat transfer and spontaneous emission
Works about Aalto-yliopiston sähkötekniikan korkeakoulu. Elektroniikan ja nanotekniikan laitos
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