Titanium doped sapphire (Ti:sapphire) is a laser gain material with broad gain bandwidth benefiting from the material stability of sapphire. These favorable characteristics of Ti:sapphire have given rise to femtosecond lasers and optical frequency combs. Shaping a single Ti:sapphire crystal into a millimeter sized high quality whispering gallery mode resonator ($Q\sim10^8$) reduces the lasing threshold to 14.2 mW and increases the laser slope efficiency to 34%. The observed lasing can be both multi-mode and single-mode. This is the first demonstration of a Ti:sapphire whispering-gallery laser. Furthermore, a novel method of evaluating the gain in Ti:sapphire in the near infrared region is demonstrated by introducing a probe laser with a cen...
A cw titanium sapphire laser pumped by an argon ion laser was used for experiments both in second h...
We demonstrate a photonic crystal nanolaser exhibiting an ultra-low threshold of 730 nA at telecom w...
In this article, we explore how cryogenic cooling of the Ti:sapphire laser crystal greatly reduces t...
A Ti:sapphire laser was developed based on self mode-locking technique using a 'Z' folded cavity. Di...
Femtosecond-laser-written Ti:sapphire channel waveguides lase at ~798.25 nm above a threshold pump p...
We report a diode-pumped ultrafast Ti:sapphire laser tunable over a 50 nm range. Sub-100 fs pulses a...
Femtosecond mode-locked lasers are a unique laser technology due to their broad optical bandwidth an...
The aim of this report was to identify the components to be employed in the development of Ti:sapphi...
We report a diode-pumped ultrafast Ti:sapphire laser tunable over a 50 nm range. Sub-100 fs pulses a...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
We investigate power-scaling of green-diode-pumped Ti:Sapphire lasers in continuous-wave (CW) and mo...
High-$Q$ whispering gallery mode microresonators are cornerstones to develop compact coherent source...
The improvement of peak power of femeto-laser depends on the compression of pulse width. The titaniu...
We present the development of a laser system for performing single-photon atom interferometry on the...
A cw titanium sapphire laser pumped by an argon ion laser was used for experiments both in second h...
We demonstrate a photonic crystal nanolaser exhibiting an ultra-low threshold of 730 nA at telecom w...
In this article, we explore how cryogenic cooling of the Ti:sapphire laser crystal greatly reduces t...
A Ti:sapphire laser was developed based on self mode-locking technique using a 'Z' folded cavity. Di...
Femtosecond-laser-written Ti:sapphire channel waveguides lase at ~798.25 nm above a threshold pump p...
We report a diode-pumped ultrafast Ti:sapphire laser tunable over a 50 nm range. Sub-100 fs pulses a...
Femtosecond mode-locked lasers are a unique laser technology due to their broad optical bandwidth an...
The aim of this report was to identify the components to be employed in the development of Ti:sapphi...
We report a diode-pumped ultrafast Ti:sapphire laser tunable over a 50 nm range. Sub-100 fs pulses a...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
We investigate power-scaling of green-diode-pumped Ti:Sapphire lasers in continuous-wave (CW) and mo...
High-$Q$ whispering gallery mode microresonators are cornerstones to develop compact coherent source...
The improvement of peak power of femeto-laser depends on the compression of pulse width. The titaniu...
We present the development of a laser system for performing single-photon atom interferometry on the...
A cw titanium sapphire laser pumped by an argon ion laser was used for experiments both in second h...
We demonstrate a photonic crystal nanolaser exhibiting an ultra-low threshold of 730 nA at telecom w...
In this article, we explore how cryogenic cooling of the Ti:sapphire laser crystal greatly reduces t...