Michelson Interferometer with Diode Laser

Michelson Interferometer with Diode Laser

27000.0 INR/Piece

Product Details:

  • Power Approx. 5 mW diode laser; electrical supply for laser drive
  • Voltage 110-240V AC (for laser power supply)
  • Display Manual/visual observation screen or projection
  • Usage Physics laboratory experiments, optical path difference measurement, refractive index experiments
  • Product Type Interferometer Apparatus with Laser Source
  • Material Precision metal and optical glass components
  • Design Bench-top, rigid base with movable mirrors and beam splitter
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Michelson Interferometer with Diode Laser Price And Quantity

  • 1 Piece
  • 27000.0 INR/Piece

Michelson Interferometer with Diode Laser Product Specifications

  • Approx. 5 mW diode laser; electrical supply for laser drive
  • Not applicable (mains powered or battery powered diode laser)
  • 650 nm Diode Laser (Red)
  • 110-240V AC (for laser power supply)
  • Photodiode or screen for observing interference patterns
  • physics laboratory
  • Mains powered or external adapter (for diode laser)
  • Manual/visual observation screen or projection
  • Bench-top, rigid base with movable mirrors and beam splitter
  • Precision metal and optical glass components
  • Approx. 350 mm x 250 mm x 200 mm (setup dependent)
  • 1 year
  • Interferometer Apparatus with Laser Source
  • High precision, suitable for interference measurements up to a fraction of a wavelength
  • Physics laboratory experiments, optical path difference measurement, refractive index experiments
  • Approx. 3-5 kg (varies with setup)
  • Power adapter for diode laser, set of mirrors, beam splitter, screen, and alignment aids
  • Fine adjustment screws for path difference calibration
  • Michelson (two-beam interferometer)
  • Unpolarized/linear polarized laser beam depending on the diode source
  • Suitable for university and advanced laboratory demonstrations
  • Cube or plate type, high quality for minimal loss
  • Manual alignment and adjustment
  • Measurement of wavelength, thickness, and refractive index determination
  • Recommended for indoor, dust-free environments
  • Laser warning marking and safety instructions
  • Stable anti-vibration base for high accuracy measurements
  • 650 nm (Red, visible light)
  • High contrast
  • Minimal, routine optical cleaning and alignment check

Michelson Interferometer with Diode Laser Trade Information

  • 1 Days
  • All India

Product Description

Michelson Interferometer with Diode Laser 

Michelson interferometer with a laser is a classic optics experiment used to measure microscopic distances, variations in refractive index, and the wavelength of light  by splitting a coherent light beam into two paths and recombining them to create an interference pattern.


Setup Consists of:

1. Laser Source

2. Beam Splitter

3. Fixed Mirror (M1)

4. Movable Mirror (M2)

5. Expanding Lens

6. Viewing Screen

7. Accessories for above experiment



Precision Measurement for Advanced Experiments

Designed for use in university and advanced laboratories, this Michelson Interferometer enables highly accurate measurement of optical path differences, wavelengths, and refractive indexes. The robust metal and glass construction, paired with a rigid anti-vibration base, minimizes errors and ensures consistent, high-contrast interference fringes, making it an essential tool for physics experiments.


User-Friendly Manual Alignment and Adjustment

With manually adjustable fine screws and clear alignment aids, users can quickly set up the interferometer and achieve optimal conditions for experiment accuracy. The included accessories and intuitive design make it accessible for learners while offering the high precision demanded by professional researchers.


Comprehensive Safety and Minimal Maintenance

Equipped with safety markings and clear instructions, this system ensures secure laboratory operation with the 650 nm diode laser. Maintenance is straightforward, requiring only occasional optical cleaning and alignment checks, while the one-year warranty adds extra peace of mind for institutions and instructors.

FAQ's of Michelson Interferometer with Diode Laser:


Q: How does the Michelson Interferometer with a 650 nm diode laser work?

A: The interferometer splits a red laser beam (650 nm) into two using a high-quality beam splitter. The reflected beams travel different optical paths, are reflected by movable mirrors (adjusted via fine screws), and recombine to produce interference fringes, which are visually observed on a screen or captured with a photodiode detector.

Q: What can be measured using this Michelson Interferometer setup?

A: You can measure the wavelength of the laser, determine the thickness of thin films, and calculate the refractive index of various materials. The instrument's high precision allows measurement of optical path differences to a fraction of the laser's wavelength.

Q: Where is the Michelson Interferometer best used?

A: This interferometer is ideal for indoor, dust-free environments such as university or research laboratories. Its anti-vibration base ensures accuracy, making it suitable for high-stakes educational demonstrations and advanced optical experiments.

Q: What is included with the interferometer kit?

A: The kit contains a diode laser (650 nm, red), power adapter, beam splitter, a set of high-quality mirrors, a projection/observation screen, alignment aids, and comprehensive safety instructions. The setup also includes all necessary components for immediate integration into laboratory experiments.

Q: How should the interferometer be maintained for optimal performance?

A: Routine optical cleaning, careful handling of glass components, and periodic alignment checks are recommended. The device's design emphasizes low-maintenance operation, minimizing downtime in busy laboratory settings.

Q: What safety features are provided with this instrument?

A: The system includes clear laser warning markings and operation instructions to ensure safe use. Users are reminded to follow standard laser safety protocols and use the device only in appropriate laboratory environments.

Q: What are the primary benefits of using this model in the laboratory?

A: This Michelson Interferometer offers high measurement accuracy, stable operation, and versatility for a range of optics experiments. Its manual adjustment, complete accessory kit, and robust build quality make it reliable for repeatable, educational, and research applications.

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