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Biomedical Imaging Fundamentals
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Noise Formalism in Photodetectors: Understanding Detection Limits
Discusses the formalism of noise in photodetectors, focusing on detection limits and the relationship between input power and output current.
Noise in Electronics: Fundamentals and Applications
Explores noise in electronics, covering average power, signal-to-noise ratio, deterministic and random signals, and noise amplification.
Optical and Electronic Shot Noise: Signal to Noise Analysis
Covers optical and electronic shot noise, focusing on signal-to-noise ratio calculations and the impact of quantum efficiency on detectivity.
Noise in Data Acquisition
Explores noise sources in data acquisition, including thermal, shot, and amplifier noise, as well as the effects of ADC noise.
CCD Cameras: Signal-to-Noise Analysis
Covers the signal-to-noise ratio in CCD cameras and techniques to optimize image capture quality.
Physical Noise Analysis: High-Speed Photodetectors
Covers the physical noise analysis in high-speed photodetectors, focusing on signal-to-noise ratios and various noise sources affecting performance.
Photomultiplier Tubes: Noise Equivalent Power Analysis
Analyzes the noise equivalent power of photomultiplier tubes and their detection limits under various conditions.
Optical Amplification: SNR and Noise Figure
Explores optical amplification effects on SNR and noise figure in photonic systems.
Optical Detection: Internal Gain Analysis
Covers internal gain in optical detection systems, focusing on avalanche photodiodes and the calculations for optimal gain and signal-to-noise ratio.
Electrical Metrology: Noise and Signal Analysis
Explores electrical metrology, emphasizing noise and signal analysis, covering topics such as charges, currents, voltages, and various noise sources.