Unit 2: Lasers and Applications - Practice Quiz

PHY109 — Engineering Physics 60 Questions
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1 What does the acronym LASER stand for?

Fundamentals of laser Easy
A. Light Acceleration by Standard Emission of Radiation
B. Light Absorption by Spontaneous Emission of Radiation
C. Light Amplification by Stimulated Emission of Radiation
D. Linear Amplification by Stimulated Energy Reflection

2 Which statement correctly describes the energy levels of an atom?

Energy levels in atoms Easy
A. They are independent of electrons
B. They have discrete allowed values
C. They have only continuous values
D. They are identical for all atoms

3 Which process occurs when matter interacts with electromagnetic radiation?

Radiation-matter interaction Easy
A. Convection
B. Diffusion
C. Absorption
D. Conduction

4 During absorption, an atom moves from a lower energy level to a higher energy level . What is the required photon energy?

Absorption of light Easy
A.
B.
C.
D.

5 How are photons emitted during spontaneous emission?

Spontaneous emission of light Easy
A. In random directions and phases
B. At zero frequency and phase
C. Only along the cavity axis
D. In one direction and phase

6 A photon produced by stimulated emission has the same frequency, phase, and direction as which photon?

Stimulated emission of light Easy
A. The incident photon
B. A background photon
C. A thermal photon
D. A reflected photon

7 Under normal thermal equilibrium, which energy level usually contains the greatest number of atoms?

Population of energy levels Easy
A. The metastable energy level
B. The ground energy level
C. The highest energy level
D. The ionization energy level

8 The Einstein coefficient represents the probability of which process?

Einstein A and B coefficients Easy
A. Induced absorption
B. Stimulated emission
C. Spontaneous emission
D. Elastic scattering

9 What is the main characteristic of a metastable state?

Metastable state Easy
A. It contains no excited atoms
B. It has a relatively long lifetime
C. It decays almost instantaneously
D. It has exactly zero energy

10 When does population inversion occur between two laser energy levels?

Population inversion Easy
A. More atoms occupy the upper level
B. Both levels contain no atoms
C. Both levels have zero energy
D. More atoms occupy the lower level

11 What is the main purpose of the mirrors in a laser resonant cavity?

Resonant cavity Easy
A. To provide optical feedback
B. To increase electrical resistance
C. To absorb all emitted light
D. To reduce the pumping energy

12 What is the process of supplying energy to the active medium of a laser called?

Excitation mechanisms Easy
A. Cooling
B. Diffraction
C. Polarization
D. Pumping

13 Which emission process is primarily responsible for light amplification in a laser?

Lasing action Easy
A. Thermal emission
B. Stimulated emission
C. Spontaneous emission
D. Photoelectric emission

14 Which property means that laser light has a very narrow range of wavelengths?

Properties of laser Easy
A. Dispersion
B. Attenuation
C. Divergence
D. Monochromaticity

15 Which material acts as the active medium in a ruby laser?

Ruby laser Easy
A. Helium-neon gas mixture
B. Gallium-arsenide semiconductor
C. Neodymium-doped yttrium garnet
D. Chromium-doped aluminium oxide

16 Which ion provides the laser action in an Nd-YAG laser?

Nd-YAG laser Easy
A. Neon ion
B. Helium ion
C. Neodymium ion
D. Chromium ion

17 What is the common visible output wavelength of a He-Ne laser?

He-Ne laser Easy
A.
B.
C.
D.

18 Which structure is commonly used as the active region of a semiconductor laser?

Semiconductor laser Easy
A. A neutral metallic junction
B. An unbiased ceramic layer
C. A reverse-biased vacuum tube
D. A forward-biased p-n junction

19 Which engineering operation commonly uses a high-power laser?

Applications of laser in engineering Easy
A. Measuring liquid density
B. Cutting metal sheets
C. Lubricating machine parts
D. Cooling electrical motors

20 What information about an object wave is recorded in holography?

Holography Easy
A. Only polarization
B. Both amplitude and phase
C. Only frequency
D. Only amplitude

21 Which combination is essential for sustained laser operation?

Fundamentals of laser Medium
A. Population inversion, stimulated emission, and optical feedback
B. Thermal equilibrium, absorption, and optical filtering
C. Ground-state depletion, diffraction, and total absorption
D. Spontaneous emission, refraction, and optical dispersion

22 An atom makes a transition from an energy level at to one at . What is the approximate wavelength of the emitted photon?

Energy levels in atoms Medium
A.
B.
C.
D.

23 For a two-level atomic system exposed to radiation of energy density , which expression represents the total downward transition rate per unit volume?

Radiation-matter interaction Medium
A.
B.
C.
D.

24 What is the approximate energy absorbed by an atom when it absorbs a photon of wavelength ?

Absorption of light Medium
A.
B.
C.
D.

25 An excited state has a mean lifetime of . Assuming exponential decay, what fraction of atoms will have emitted spontaneously after ?

Spontaneous emission of light Medium
A. Approximately
B. Approximately
C. Approximately
D. Approximately

26 A photon stimulates an excited atom to emit another photon. Which property must the emitted photon have relative to the incident photon?

Stimulated emission of light Medium
A. The same frequency, phase, direction, and polarization
B. The same frequency but random phase and direction
C. A higher frequency with random phase and polarization
D. A lower frequency but the same phase and direction

27 Two nondegenerate energy levels are separated by . At , what is the approximate equilibrium ratio ? Use .

Population of energy levels Medium
A.
B.
C.
D.

28 For two nondegenerate levels in thermal equilibrium, which relation between the Einstein coefficients is correct?

Einstein A and B coefficients Medium
A.
B.
C.
D.

29 Why is a metastable state useful in a laser active medium?

Metastable state Medium
A. It allows excited atoms to accumulate before stimulated emission
B. It keeps all atoms permanently within the electronic ground state
C. It forces excited atoms to decay immediately by spontaneous emission
D. It prevents atoms from absorbing photons from the pump source

30 For a laser transition between levels and having equal degeneracies, which condition produces optical gain?

Population inversion Medium
A.
B.
C.
D.

31 A laser cavity has length and refractive index . What is the longitudinal mode spacing?

Resonant cavity Medium
A.
B.
C.
D.

32 Which pairing of a laser and its commonly used excitation mechanism is correct?

Excitation mechanisms Medium
A. Nd-YAG laser — gas discharge pumping
B. Semiconductor laser — chemical reaction
C. He-Ne laser — electrical discharge
D. Ruby laser — direct current injection

33 A laser medium has a small-signal gain coefficient of and distributed losses of . What happens to light during one pass through the medium before gain saturation?

Lasing action Medium
A. It remains constant because both coefficients are small
B. It decays with net coefficient
C. It grows with net coefficient
D. It grows with net coefficient

34 A laser beam has a divergence of and an initial diameter of . Neglecting diffraction details, what is its approximate diameter after traveling if divergence denotes the full angular spread?

Properties of laser Medium
A.
B.
C.
D.

35 Why does a ruby laser generally require intense pumping and often operate in pulsed mode?

Ruby laser Medium
A. It is a gas laser whose atoms rapidly diffuse from the cavity
B. It is a four-level laser whose upper state has a short lifetime
C. It is a three-level laser whose lower laser level is the ground state
D. It is a diode laser whose junction requires reverse-bias breakdown

36 Which statement best explains why population inversion is easier to maintain in an Nd-YAG laser than in a ruby laser?

Nd-YAG laser Medium
A. Its active ions require no external pumping energy
B. Its lower laser level rapidly decays to the ground state
C. Its lower laser level is identical to the ground state
D. Its upper laser level decays before pumping can occur

37 What is the principal role of helium atoms in a He-Ne laser?

He-Ne laser Medium
A. They transfer excitation energy to neon atoms through collisions
B. They absorb the output beam to stabilize its intensity
C. They act as mirrors that provide feedback within the cavity
D. They directly emit the main laser radiation

38 A direct-bandgap semiconductor has a bandgap of . What is the approximate wavelength of its emitted laser light?

Semiconductor laser Medium
A.
B.
C.
D.

39 An engineer must measure a very small displacement of a machine component without physical contact. Which laser-based method is most suitable?

Applications of laser in engineering Medium
A. Laser drilling
B. Laser heat treatment
C. Laser cladding
D. Laser interferometry

40 During hologram recording, why is a reference beam combined with the light scattered from the object?

Holography Medium
A. To remove diffraction effects from the photographic recording plate
B. To encode the object's phase information as an interference pattern
C. To convert the coherent laser light into spatially incoherent light
D. To increase the object's temperature and improve its reflectivity

41 A laser cavity of length has mirror reflectivities and , with distributed internal loss . Assuming uniform gain, what is the threshold gain coefficient?

Fundamentals of laser Hard
A.
B.
C.
D.

42 Two atomic levels in thermal equilibrium have and degeneracies . What is at , using ?

Energy levels in atoms Hard
A.
B.
C.
D.

43 Levels 1 and 2 have degeneracies and . For radiation resonant with the transition, which population condition produces transparency when spontaneous emission is neglected?

Radiation-matter interaction Hard
A.
B.
C.
D.

44 For a transition with stimulated-emission cross-section and degeneracies and , which expression represents the net resonant absorption coefficient, assuming identical normalized line shapes?

Absorption of light Hard
A.
B.
C.
D.

45 An excited state decays radiatively through two channels having Einstein coefficients and . What are its radiative lifetime and the branching probability for emission to level 1?

Spontaneous emission of light Hard
A. and
B. and
C. and
D. and

46 An atom is in thermal radiation for which . What is the ratio of the stimulated-emission rate to the spontaneous-emission rate for the transition?

Stimulated emission of light Hard
A.
B.
C.
D.

47 A nondegenerate two-level atomic system is in thermal equilibrium at a positive absolute temperature. Which statement about its level populations is necessarily true?

Population of energy levels Hard
A. is independent of the energy separation
B. can occur at sufficiently high temperature
C. at every finite positive temperature
D. occurs at a finite positive temperature

48 If is blackbody spectral energy density per unit ordinary frequency, which Einstein relation follows from equilibrium with Planck's distribution?

Einstein A and B coefficients Hard
A.
B.
C. for all degeneracies
D.

49 In an idealized three-level laser, pumping transfers atoms from the ground state rapidly into a metastable state. If the effective pump rate per ground-state atom is and the metastable lifetime is , what condition gives population inversion between these two states?

Metastable state Hard
A.
B.
C.
D.

50 A fraction of the active atoms is in the upper laser level. Neglecting other populated states, what are the inversions for an ideal three-level laser and an ideal four-level laser, respectively?

Population inversion Hard
A. and
B. and
C. and
D. and

51 A linear cavity has and refractive index . A gain band of full width is centered exactly on one longitudinal mode. How many longitudinal modes lie within the band?

Resonant cavity Hard
A. 2 modes
B. 4 modes
C. 5 modes
D. 3 modes

52 An Nd:YAG laser is pumped at and emits at . Assuming one laser photon can result from each absorbed pump photon, what is the maximum energy-conversion efficiency imposed solely by the quantum defect?

Excitation mechanisms Hard
A.
B.
C.
D.

53 A homogeneously broadened laser has saturated gain . If , what intracavity intensity is expected in steady-state operation above threshold?

Lasing action Hard
A.
B.
C.
D.

54 A laser has a Lorentzian spectral line with full width at half maximum . If first-order coherence decays as , what is its coherence length in vacuum?

Properties of laser Hard
A.
B.
C.
D.

55 In a simplified ruby laser, only the ground and metastable laser levels retain significant populations. If the threshold inversion is , what minimum fraction of chromium ions must occupy the metastable state?

Ruby laser Hard
A.
B.
C.
D.

56 In a simplified four-level Nd:YAG model, atoms flow through the upper and lower laser levels at the same steady rate. If their lifetimes are and , respectively, what is ?

Nd-YAG laser Hard
A.
B.
C.
D.

57 Which sequence most accurately describes production of the output in a He-Ne laser?

He-Ne laser Hard
A. Electrons excite helium metastables, helium transfers energy to neon, and neon undergoes stimulated emission
B. Electrons excite neon ground states, neon transfers energy to helium, and helium undergoes stimulated emission
C. Helium emits resonant photons, neon absorbs them, and helium supplies the laser transition
D. Neon ions recombine with electrons, helium quenches them, and ionic neon produces the laser transition

58 A semiconductor laser emits near and has cavity length with group index . What is the approximate wavelength spacing of adjacent longitudinal modes?

Semiconductor laser Hard
A.
B.
C.
D.

59 In a Michelson interferometer using a laser, 500 fringes cross the detector when one mirror is displaced. What is the mirror displacement?

Applications of laser in engineering Hard
A.
B.
C.
D.

60 A transmission hologram is recorded at using a normally incident object wave and a reference wave at . It is then illuminated normally at . At what approximate angle does the corresponding first-order reconstructed wave emerge?

Holography Hard
A.
B.
C.
D.