PHY-1109 Physics

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Lecture 2 – Interference of Light

🌊 Young’s Double-Slit Experiment (YDS)

  • Setup → Light source → narrow slit → double slits → screen
  • Observation → Bright & dark fringes (interference pattern)

➡️ Key Idea: Light behaves like a wave, and when waves overlap, they interfere.


🔑 Basic Terms in Interference

  • Coherent sources → Two waves with constant phase difference.
  • Path difference (Δx) → Extra distance one wave travels compared to the other.
  • Phase difference (Δϕ) → Difference in oscillation phase due to Δx.
    • Formula:
  • Constructive interference → Waves in phase → Bright fringe.
    • Condition: Δx = mλ (m = 0, 1, 2, …)
  • Destructive interference → Waves out of phase → Dark fringe.
    • Condition: Δx = (m + ½)λ

🧮 Theoretical Treatment of YDS

  • Path difference due to slit separation d and screen distance D:

where y = fringe position on screen.

  • Fringe width (Δy):

➡️ Larger wavelength (λ) → wider fringes.
➡️ Increasing slit separation (d) → narrower fringes.


📌 Visual Flow

Light source → Coherent waves from two slits → Overlap on screen
→ Path difference → Constructive/Destructive interference → Bright/Dark fringes


⚡ Key Takeaways

  • Young’s experiment proved wave nature of light.
  • Interference needs coherent sources.
  • Bright & dark fringes arise from path difference.
  • Fringe width depends on λ, D, and d.

📘 Glossary – Lecture 2

  • Interference → Phenomenon where two or more waves superpose to form a resultant wave with varying intensity (bright/dark regions).

  • Constructive Interference → When waves meet in phase (path difference = integral multiple of λ), producing a bright fringe.

  • Destructive Interference → When waves meet out of phase (path difference = odd half multiple of λ), producing a dark fringe.

  • Path Difference (Δx) → Difference in distance traveled by two waves from slits to a point on the screen.

  • Phase Difference (Δφ) → Difference in phase between two waves due to path difference (Δφ = 2πΔx / λ).

  • Coherent Sources → Sources having constant phase difference and same frequency, necessary for stable interference.

  • Fringe Width (ω) → The spacing between two consecutive bright (or dark) fringes:

    where λ = wavelength, D = distance between slits and screen, d = slit separation.

  • Central Maximum → The bright fringe at the center of the interference pattern (zero path difference).