Discusses the fundamental properties and characteristics of optical detectors, including responsivity, quantum efficiency, and the impact of noise on detection limits.
Explores various microscopy detectors, their structures, and applications in digital imaging systems, emphasizing low-light imaging and CMOS technology advantages.
Explores the evolution and advantages of micromachined ultrasonic transducers, focusing on PMUTs and their applications in biometric identity verification and high-resolution imaging.
Covers the principles of single photon detection using Electron Multiplying Charge-Coupled Devices (EM-CCDs) and their applications in low-light imaging.
Covers the principles and applications of plenoptic cameras and light field photography, including techniques for numerical refocusing and the evolution of camera technology.
Focuses on the practical application of Digital Image Correlation for civil engineers, covering measuring displacement fields and computing strain fields.
Explores the Fourier transform properties with derivatives and introduces the Laplace transform for signal transformation and solving differential equations.
Covers the theory of numerical methods for frequency estimation on deterministic signals, including Fourier series and transform, Discrete Fourier transform, and the Sampling theorem.