Quantum

Quantum physics is the silent engine of our daily lives, powering everything from smartphone semiconductors and laser communications to high-precision medical diagnostics like MRI. Yet, bridging the gap between this ubiquitous technology and its abstract theoretical formalism remains a major pedagogical challenge

Our "Quantum" range bridges the gap between theoretical abstraction and the concrete observation of atomic and photonic phenomena. Using high-precision instrumentation, transform your teaching labs into genuine exploration hubs for your higher education students.

The 4 Pillars of our Quantum Range:

  • Wave-Particle Duality and Quantum Information: The experimental bridge between classical optics and quantum mechanics. Explore Bohr’s complementarity through Quantum Eraser experiments, implemented either with Young's double slits or with a Mach-Zehnder interferometer, where "which-path" information alters the nature—wave or particle—of the photon.
  • Atomic Structure and Spectroscopy: Probe the internal structure of matter and energy quantization. Validate discrete atomic energy levels with the historic Franck-Hertz experiment. Explore the electron's magnetic moment and the lifting of degeneracy via the Zeeman Effect, an essential introduction to spin-orbit coupling and quantum numbers.
  • Solid-State Physics and Nanotechnologies: Utilize the tunneling effect to bypass the diffraction limit and explore matter at the sub-nanometric scale. The Scanning Tunneling Microscope (STM) allows for the visualization of the atomic topography of HOPG (Highly Oriented Pyrolytic Graphite) and the local density of states (LDOS). Additionally, determine the bandgap of semiconductors, the bedrock of all modern electronics.
  • Resonance and Quantum Computing: From quanta detection to information processing. Use Silicon Photomultipliers (SiPM) for the study of Poisson statistics and the determination of Planck’s constant. Go further by manipulating actual Qubits on NMR (Nuclear Magnetic Resonance) systems: visualize superposition on the Bloch sphere, observe Rabi oscillations, and program logic gates to execute real quantum algorithms.

These themes, essential for training the next generation of physicists and engineers, are comprehensively addressed through the specialized kits within our "Quantum" category.

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  1. Frank-Hertz experiment with Hg tube assisted by computer
    Sku 280363

    Frank-Hertz experiment with Hg tube assisted by computer

    €4,704.51 €5,645.41
    +
    On order
  2. Sku 612287

    €2,165.19 €2,598.23
    +
    On order
  3. XRE 4.0 X-ray expert set for schools
    Sku 608144

    XRE 4.0 X-ray expert set for schools

    €22,070.00 €26,484.00
    +
    On order
  4. Quantum Eraser Option
    Sku 205131

    Quantum Eraser Option

    €416.67 €500.00
    +
    On order
  5. Hall Effect in n and p doped germanium (teslameter)
    Sku 280359

    Hall Effect in n and p doped germanium (teslameter)

    €4,799.22 €5,759.06
    +
    On order
  6. Experiment Zeeman Effect
    Sku 204992

    Experiment Zeeman Effect

    €15,754.14 €18,904.97
    +
    On order
  7. Quantum Eraser TP with Delayed Choice
    Sku 204864

    Quantum Eraser TP with Delayed Choice

    €1,750.00 €2,100.00
    +
    Replenishment in progress
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