Argomenti del programma: Prelude to Quantum Optics 1. Introduction: theoretical and experimental foundations for the quantization of the electromagnetic field 2. Photodetection statistics: semiclassical model, violation of the semiclassical model by sub-Poissonian light 3. Formalism of quantum mechanics: axioms, bra-ket notation, matrix notation, Schroedinger and Heisenberg pictures Quantization of the electromagnetic field 4.
Argomenti del programma: Prelude to Quantum Optics 1. Introduction: theoretical and experimental foundations for the quantization of the electromagnetic field 2. Photodetection statistics: semiclassical model, violation of the semiclassical model by sub-Poissonian light 3. Formalism of quantum mechanics: axioms, bra-ket notation, matrix notation, Schroedinger and Heisenberg pictures Quantization of the electromagnetic field 4.
Argomenti del programma: Prelude to Quantum Optics 1. Introduction: theoretical and experimental foundations for the quantization of the electromagnetic field 2. Photodetection statistics: semiclassical model, violation of the semiclassical model by sub-Poissonian light 3. Formalism of quantum mechanics: axioms, bra-ket notation, matrix notation, Schroedinger and Heisenberg pictures Quantization of the electromagnetic field 4.
Argomenti del programma: Prelude to Quantum Optics 1. Introduction: theoretical and experimental foundations for the quantization of the electromagnetic field 2. Photodetection statistics: semiclassical model, violation of the semiclassical model by sub-Poissonian light 3. Formalism of quantum mechanics: axioms, bra-ket notation, matrix notation, Schroedinger and Heisenberg pictures Quantization of the electromagnetic field 4.
Argomenti del programma: Prelude to Quantum Optics 1. Introduction: theoretical and experimental foundations for the quantization of the electromagnetic field 2. Photodetection statistics: semiclassical model, violation of the semiclassical model by sub-Poissonian light 3. Formalism of quantum mechanics: axioms, bra-ket notation, matrix notation, Schroedinger and Heisenberg pictures Quantization of the electromagnetic field 4.