Atomfair-MOE837 Faraday Effect Magneto-Optical Experiment Setup for Magneto-Optical Modulation Optical Communication Research

The Atomfair-MOE837 Crystal Magneto-Optical Effect Experiment Setup is a high-performance optoelectronic and laser instrument. Based on the Faraday effect, it supports magneto-optical modulation optical communication research, Faraday rotation angle measurement, Verdet constant calculation and magneto-optical glass characteristic determination, suitable for scientific research, teaching and laboratory scenarios.

Description

 

Atomfair-MOE837 Crystal Magneto-Optical Effect Experiment Setup

Product Overview

The Atomfair-MOE837 Crystal Magneto-Optical Effect Experiment Setup is a high-performance experimental instrument belonging to the optoelectronics and laser category. It is specifically designed to explore the magneto-optical properties of materials, leveraging the Faraday effect (magneto-optical rotation effect) which holds significant importance in optical experiments. This setup provides reliable and precise experimental conditions for researchers, educators, and students engaged in optical research and related fields, facilitating in-depth exploration of key optical principles and material characteristics.

Key Features & Experimental Capabilities

  • Conduct research on magneto-optical modulation optical communication experiments, enabling in-depth exploration of the application potential of magneto-optical effects in optical communication systems.
  • Master the measurement method of Faraday rotation angle, providing accurate data support for analyzing the magneto-optical properties of materials.
  • Calculate the Verdet constant of materials, a crucial parameter for evaluating the magneto-optical performance of substances.
  • Determine the characteristics of magneto-optical glass, helping to understand the optical behavior of magneto-optical glass under magnetic field conditions and supporting related material research and development.

Technical Specifications & Configuration

No. Component Name Specifications
1 Light Source Semiconductor laser, 650nm wavelength, 10mW power
2 Modulation Coil Composed of one large coil and one small coil
3 Main Control Box Equipped with signal output, energy reception, measurement, and display functions
4 Playback Device Edifier R181 Speaker
5 Other Accessories Guide rail, sliding seat, two-dimensional light source frame, polarizer frame, etc.

Important Notes

The above configurations and parameters are for reference only. The actual configuration shall be subject to the product packing list.

Atomfair reserves the right to make minor modifications to the product configuration without prior notice. For the most accurate and up-to-date product information, please refer to the accompanying documentation upon receipt of the product.

Application Scenarios

Ideal for academic research institutions, universities, technical colleges, and industrial R&D laboratories. It is widely used in optical experiment teaching, magneto-optical material research, optical communication technology development, and other related fields. Whether for student experimental training to deepen the understanding of optical principles or for professional researchers to conduct advanced scientific research, this experimental setup delivers stable performance and comprehensive functions to meet diverse experimental needs.

If you’re interested, have any questions, or have specific customization requirements, please feel free to contact us at inquiry@atomfair.com.