Modal decomposition of aperture fields in detection and estimation of incoherent objects
Aperture field modal decomposition of optical system in terms of integral equation eigenfunctions during detection and estimation of incoherent objects
Engineering topics
Publications and source records attributed to Helstrom, C. W..
Aperture field modal decomposition of optical system in terms of integral equation eigenfunctions during detection and estimation of incoherent objects
Quantum mechanical form of Cramer-Rao inequality used to determined error lower bound for radiating object parameter observed by quantum-limited optical system
Optimum signal reception using quantum-mechanical communication theory
Information transfer from incoherently radiating objects
Application of signal detection theory to optics
Signal detection theory and aperture field optics
Incoherent object threshold light detection by quantum limited optical system in presence of radiant thermal energy
Estimation of object parameters by quantum-limited optical system
Ideal quantum receiver to detect coherent narrow band optical signal in presence of thermal background radiation, noting error probability
Quantum-limited optical system for detecting objects emitting light with Lorentz spectrum
Quantum limited detection of incoherent object with Lorentz spectrum
Cumulative probability distribution of positive random variable from moment generating function, exemplifying exponential and Poisson functions
Signal to noise ratio detection by quantum statistics
Modal aperture field decomposition for optical detection and radiance estimation on incoherent objects
Radiance estimation and object resolvability by statistical parameter analysis of aperture field
Upper bound obtained for probability of zero Gaussian random process remaining above specified signal throughout prescribed interval of time
Photoelectric detection of coherent light in filtered background light
Quantum statistical decision theory for detection and estimation of signals in random noise