Welcome to our websites!
section02_bg(1)
head(1)

China Wholesale Microwave Resonance Manufacturers – LADP-7 Integrated Experimental System of Faraday and Zeeman Effects – Labor

Short Description:


Product Detail

Product Tags

Related Video

Feedback (2)

"Sincerity, Innovation, Rigorousness, and Efficiency" will be the persistent conception of our company to the long-term to establish together with customers for mutual reciprocity and mutual gain for Heisenberg Uncertainty, Sagnac Interferometer, Wien’S Displacement Law, Create Values,Serving Customer!" would be the purpose we pursue. We sincerely hope that all clients will build long-lasting and mutually effective cooperation with us.In the event you wish to get extra facts about our enterprise, Be sure to get in touch with with us now.
China Wholesale Microwave Resonance Manufacturers – LADP-7 Integrated Experimental System of Faraday and Zeeman Effects – Labor Detail:

Experiments

1. Observe Zeeman effect, and understand atomic magnetic moment and spatial quantization

2. Observe the splitting and the polarization of a Mercury atomic spectral line at 546.1 nm

3. Calculate electron charge-mass ratio based on Zeeman splitting amount

4. Observe Zeeman effect at other Mercury spectral lines (e.g. 577 nm, 436 nm & 404 nm) with optional filters

5. Learn how to adjust a Fabry-Perot etalon and apply a CCD device in spectroscopy

6. Measure magnetic field intensity using a Teslameter, and determine magnetic field distribution

7. Observe Faraday effect, and measure Verdet constant using light extinction method

Specifications

 

Item Specifications
Electromagnet B: ~1300 mT; pole spacing: 8 mm; pole dia: 30 mm: axial aperture: 3 mm
Power supply 5 A/30 V (max)
Diode laser > 2.5 mW@650 nm; linearly polarized
Etalon dia: 40 mm; L (air)= 2 mm; passband:>100 nm; R=95%; flatness:< λ/30
Teslameter range: 0-1999 mT; resolution: 1 mT
Pencil mercury lamp emitter diameter: 6.5 mm; power: 3 W
Interference optical filter CWL: 546.1 nm; half passband: 8 nm; aperture: 20 mm
Direct reading microscope magnification: 20 X; range: 8 mm; resolution: 0.01 mm
Lenses collimating: dia 34 mm; imaging: dia 30 mm, f=157 mm

 

Parts List

 

Description Qty
Main Unit 1
Diode Laser with Power Supply 1 set
Magneto-Optic Material Sample 1
Pencil Mercury Lamp 1
Mercury Lamp Adjustment Arm 1
Milli-Teslameter Probe 1
Mechanical Rail 1
Carrier Slide 6
Power Supply of Electromagnet 1
Electromagnet 1
Condensing Lens with Mount 1
Interference Filter at 546 nm 1
F-P Etalon 1
Polarizer with Scale Disk 1
Quarter-Wave Plate with Mount 1
Imaging Lens with Mount 1
Direct Reading Microscope 1
Photo Detector 1
Power Cord 3
CCD, USB Interface & Software 1 set (option 1)
Interference filters with mount at 577 & 435 nm 1 set (option 2)

Product detail pictures:

China Wholesale Microwave Resonance Manufacturers –  LADP-7 Integrated Experimental System of Faraday and Zeeman Effects – Labor detail pictures


Related Product Guide:

We intention to see quality disfigurement within the creation and supply the ideal support to domestic and overseas buyers wholeheartedly for China Wholesale Microwave Resonance Manufacturers – LADP-7 Integrated Experimental System of Faraday and Zeeman Effects – Labor , The product will supply to all over the world, such as: London, Pretoria, India, Our aim is to help customers realize their goals. We are making great efforts to achieve this win-win situation and sincerely welcome you to join us. In a word, when you choose us, you choose a perfect life. Welcome to visit our factory and welcome your order! For further inquiries, please do not hesitate to contact us.
  • We have been appreciated the Chinese manufacturing, this time also did not let us disappoint,good job!
    5 Stars By John biddlestone from Portugal - 2018.06.21 17:11
    The customer service staff is very patient and has a positive and progressive attitude to our interest, so that we can have a comprehensive understanding of the product and finally we reached an agreement, thanks!
    5 Stars By Nina from Bulgaria - 2018.10.09 19:07
    Write your message here and send it to us