Semiconductor microlasers with an equilateral triangle resonator (ETR) are analyzed by rate equations with the mode lifetimes calculated by the finite-difference time-domain technique and the Pade approximation. A gain spectrum based on the relation of the gain spectrum and the spontaneous emission spectrum is proposed for considering the mode selection in a wide wavelength span. For an ETR microlaser with the side length of about 5 mum, we find that single fundamental mode operation at about 1.55 mum can be obtained as the side length increases from 4.75 to 5.05 mum. The corresponding wavelength tuning range is 93 nm, and the threshold current is about 0.1 to 0.4 mA
Semiconductor laser devices based on triangular resonators can provide cheap, compact, and high perf...
The mode wavelength and quality factor (Q-factor) for resonant modes in optical equilateral triangle...
Theoretical calculations of the mode characteristics of an equilateral-triangle resonator (ETR) with...
The influence of imperfect boundaries on the mode quality factor is investigated for equilateral-tri...
The eigenmode characteristics for equilateral triangle resonator (ETR) semiconductor microlasers are...
The size of equilateral triangle resonator (ETR) needed for confining the fundamental mode is invest...
Mode characteristics are analyzed for electrically injected equilateral-triangle-resonator (ETR) sem...
The semiconductor microlasers with an equilateral triangle resonator which can be fabricated by dry ...
The semiconductor microlasers based on the equilateral triangle resonator (ETR) can be fabricated fr...
The characteristics of equilateral-triangle resonator (ETR) and square resonator microlasers are rep...
Semiconductor equilateral triangle microresonators (ETRs) with side length of 5, 10, and 20 mum are ...
The mode frequencies and quality factors are calculated for the equilateral triangle semiconductor m...
Modes in equilateral triangle resonator (ETR) are analyzed and classified according to the irreducib...
We analyze the mode behaviors for semiconductor lasers with an equilateral triangle resonator by der...
Optical bistability is reported in InP/GaInAsP equilateral-triangle-resonator (ETR) microlasers, whi...
Semiconductor laser devices based on triangular resonators can provide cheap, compact, and high perf...
The mode wavelength and quality factor (Q-factor) for resonant modes in optical equilateral triangle...
Theoretical calculations of the mode characteristics of an equilateral-triangle resonator (ETR) with...
The influence of imperfect boundaries on the mode quality factor is investigated for equilateral-tri...
The eigenmode characteristics for equilateral triangle resonator (ETR) semiconductor microlasers are...
The size of equilateral triangle resonator (ETR) needed for confining the fundamental mode is invest...
Mode characteristics are analyzed for electrically injected equilateral-triangle-resonator (ETR) sem...
The semiconductor microlasers with an equilateral triangle resonator which can be fabricated by dry ...
The semiconductor microlasers based on the equilateral triangle resonator (ETR) can be fabricated fr...
The characteristics of equilateral-triangle resonator (ETR) and square resonator microlasers are rep...
Semiconductor equilateral triangle microresonators (ETRs) with side length of 5, 10, and 20 mum are ...
The mode frequencies and quality factors are calculated for the equilateral triangle semiconductor m...
Modes in equilateral triangle resonator (ETR) are analyzed and classified according to the irreducib...
We analyze the mode behaviors for semiconductor lasers with an equilateral triangle resonator by der...
Optical bistability is reported in InP/GaInAsP equilateral-triangle-resonator (ETR) microlasers, whi...
Semiconductor laser devices based on triangular resonators can provide cheap, compact, and high perf...
The mode wavelength and quality factor (Q-factor) for resonant modes in optical equilateral triangle...
Theoretical calculations of the mode characteristics of an equilateral-triangle resonator (ETR) with...