Difference between revisions of "Optics Bootcamp"
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:<math> {1 \over S_o} + {1 \over S_i} = {1 \over f}</math> | :<math> {1 \over S_o} + {1 \over S_i} = {1 \over f}</math> | ||
:<math>M = {h_i \over h_o} = {S_i \over S_o}</math> | :<math>M = {h_i \over h_o} = {S_i \over S_o}</math> | ||
− | * become familiar with image acquisition and | + | * become familiar with image acquisition and distance measurement using the Matlab software. |
{{:Optical microscopy lab wiki pages}} | {{:Optical microscopy lab wiki pages}} |
Revision as of 20:06, 30 July 2014
Through this exercise, you will
- learn the basics of mounting, aligning and adjusting optical components;
- verify the lens maker and the magnification formulae:
- $ {1 \over S_o} + {1 \over S_i} = {1 \over f} $
- $ M = {h_i \over h_o} = {S_i \over S_o} $
- become familiar with image acquisition and distance measurement using the Matlab software.
Optical microscopy lab
Code examples and simulations
- Converting Gaussian fit to Rayleigh resolution
- MATLAB: Estimating resolution from a PSF slide image
- Matlab: Scalebars
- Calculating MSD and Diffusion Coefficients
Background reading
- Geometrical optics and ray tracing
- Physical optics and resolution
- Optical aberrations
- Aperture and field stops
- Optical detectors, noise, and the limit of detection
- Manta G032 camera measurements
- Understanding log plots
References