Modern Optics 3: Quantum Optics

Modern Optics 3: Quantum Optics

By Prof. Dr. Maria ChekhovaEducation
Download on the App Store

Modern Optics 3: Quantum Optics episodes

  • Modern Optics 3: Quantum Optics
    Contents:
    1. Basic concepts of statistical optics
    2. Spatial and temporal coherence. Coherent modes, photon number per mode
    3. Intensity fluctuations and Hanbury Brown and Twiss experiment
    4. Interaction between atom and light (semiclassical description)
    5. Quantization of the electromagnetic field
    6. Quantum operators and quantum states
    7. Heisenberg and Schrödinger pictures
    8. Polarization in quantum optics
    9. Nonlinear optical effects for producing nonclassical light
    10. Parametric down-conversion and four-wave mixing, biphotons, squeezed light
    11. Single-photon states and single-photon emitters
    12. Entanglement and Bell’s inequality violation
    1 hr 26 min
  • Modern Optics 3: Quantum Optics
    Contents:
    1. Basic concepts of statistical optics
    2. Spatial and temporal coherence. Coherent modes, photon number per mode
    3. Intensity fluctuations and Hanbury Brown and Twiss experiment
    4. Interaction between atom and light (semiclassical description)
    5. Quantization of the electromagnetic field
    6. Quantum operators and quantum states
    7. Heisenberg and Schrödinger pictures
    8. Polarization in quantum optics
    9. Nonlinear optical effects for producing nonclassical light
    10. Parametric down-conversion and four-wave mixing, biphotons, squeezed light
    11. Single-photon states and single-photon emitters
    12. Entanglement and Bell’s inequality violation
    1 hr 32 min
  • Modern Optics 3: Quantum Optics
    Contents:
    1. Basic concepts of statistical optics
    2. Spatial and temporal coherence. Coherent modes, photon number per mode
    3. Intensity fluctuations and Hanbury Brown and Twiss experiment
    4. Interaction between atom and light (semiclassical description)
    5. Quantization of the electromagnetic field
    6. Quantum operators and quantum states
    7. Heisenberg and Schrödinger pictures
    8. Polarization in quantum optics
    9. Nonlinear optical effects for producing nonclassical light
    10. Parametric down-conversion and four-wave mixing, biphotons, squeezed light
    11. Single-photon states and single-photon emitters
    12. Entanglement and Bell’s inequality violation
    1 hr 40 min
  • Modern Optics 3: Quantum Optics
    Contents:
    1. Basic concepts of statistical optics
    2. Spatial and temporal coherence. Coherent modes, photon number per mode
    3. Intensity fluctuations and Hanbury Brown and Twiss experiment
    4. Interaction between atom and light (semiclassical description)
    5. Quantization of the electromagnetic field
    6. Quantum operators and quantum states
    7. Heisenberg and Schrödinger pictures
    8. Polarization in quantum optics
    9. Nonlinear optical effects for producing nonclassical light
    10. Parametric down-conversion and four-wave mixing, biphotons, squeezed light
    11. Single-photon states and single-photon emitters
    12. Entanglement and Bell’s inequality violation
    1 hr 43 min
  • Modern Optics 3: Quantum Optics
    Contents:
    1. Basic concepts of statistical optics
    2. Spatial and temporal coherence. Coherent modes, photon number per mode
    3. Intensity fluctuations and Hanbury Brown and Twiss experiment
    4. Interaction between atom and light (semiclassical description)
    5. Quantization of the electromagnetic field
    6. Quantum operators and quantum states
    7. Heisenberg and Schrödinger pictures
    8. Polarization in quantum optics
    9. Nonlinear optical effects for producing nonclassical light
    10. Parametric down-conversion and four-wave mixing, biphotons, squeezed light
    11. Single-photon states and single-photon emitters
    12. Entanglement and Bell’s inequality violation
    1 hr 34 min
  • Modern Optics 3: Quantum Optics
    Contents:
    1. Basic concepts of statistical optics
    2. Spatial and temporal coherence. Coherent modes, photon number per mode
    3. Intensity fluctuations and Hanbury Brown and Twiss experiment
    4. Interaction between atom and light (semiclassical description)
    5. Quantization of the electromagnetic field
    6. Quantum operators and quantum states
    7. Heisenberg and Schrödinger pictures
    8. Polarization in quantum optics
    9. Nonlinear optical effects for producing nonclassical light
    10. Parametric down-conversion and four-wave mixing, biphotons, squeezed light
    11. Single-photon states and single-photon emitters
    12. Entanglement and Bell’s inequality violation
    1 hr 35 min

About Modern Optics 3: Quantum Optics

From the publisher's feed

Contents:

More shows like Modern Optics 3: Quantum Optics

Public Theology - Religion - Education. Interreligious Perspectives by Prof. Dr. Manfred Pirner

Public Theology - Religion - Education. Interreligious Perspectives

0 Listeners

Foundations of Quantum Mechanics by Prof. Dr. Florian Marquardt

Foundations of Quantum Mechanics

3 Listeners

Die deutsche Königswahl (1125-1411) by Prof. Dr. Stuart Jenks

Die deutsche Königswahl (1125-1411)

0 Listeners

Diagnostic Medical Image Processing (DMIP) by Prof. Dr. Joachim Hornegger

Diagnostic Medical Image Processing (DMIP)

1 Listeners

Lectures on Quantum Theory (Elite Graduate Programme) 2015 -Measurements by Dr. Frederic P. Schuller

Lectures on Quantum Theory (Elite Graduate Programme) 2015 -Measurements

1 Listeners

Einführungsvorlesung Mittelalter by Prof. Dr. Stuart Jenks

Einführungsvorlesung Mittelalter

0 Listeners

Lectures on the Geometric Anatomy of Theoretical Physics by Dr. Frederic P. Schuller

Lectures on the Geometric Anatomy of Theoretical Physics

7 Listeners

Quantum Computing by Prof. Dr. Michael J. Hartmann

Quantum Computing

0 Listeners

Modern Optics 3: Quantum Optics by Prof. Dr. Maria Chekhova

Modern Optics 3: Quantum Optics

0 Listeners

Deep Learning - Plain Version by Prof. Dr.-Ing. Andreas Maier

Deep Learning - Plain Version

0 Listeners