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Diffraction
Fraunhofer diffraction
Grating
Fiber optic
Fiber coupling-multimode fiber
Fiber coupling-single mode fiber
Spatial modes parameters
Transmission parameters
General parameters
Catalogs
Wavelengths
Geometrical optics
Aberration
Aperture
Chromatic aberration
Depth of field-defocus
Paraxial conjugation
Paraxial parameters
Prism
Refraction-reflection
Rigorous stigmatism
Interference
Ar coating
Fabry perot
Optical coherence
Two waves interference
Laser
Beam parameters
Beam propagation
Power and energy
Spectrum and time bandwidth product
Miscellaneous
Optical spectrum
Optoelectronics
Acousto optic
Photodetection
Camera
Polarization
Birefringence
Refraction-reflexion
Radiometry Photometry
Photometry
Black body
Grey body
Diffusion
Flux transmitted through an aperture
Flux transmitted through a light guide
Irradiance on a surface
Source parameters
Miscellaneous
Unit conversions
Geometry
Photometry
Power-energy-transmission
Spectrum-and-time
Thermodynamic
diffusion
integrating sphere
irradiance and radiance – given input power and sphere surface
irradiance, radiance and output power – given input power and sphere diameter
secondary source
secondary source intensity vs received luminous flux - isotropic diffusion
secondary source radiance vs received irradiance – diffusion with gaussian angular distribution
secondary source radiance vs received irradiance – isotropic diffusion
.../ diffusion
/
integrating sphere
/
irradiance, radiance and output power – given input power and sphere diameter
about
caution
parameters
glossary
tutorial
INPUT
VALUE
UNIT
VARIABLE
MIN
MAX
STEPS
Pin
kW
W
mW
microW
dBm
Dsph
m
cm
mm
micron
Dint
m
cm
mm
micron
Dout
m
cm
mm
micron
Ref
no
%
dB
OUTPUT
VALUE
UNIT
Er
to be calculated
W/m2
W/cm2
W/mm2
W/micron2
Lr
to be calculated
W/m2/sr
Pout
to be calculated
kW
W
mW
microW
dBm