We present a 18 m W fiber-coupled single-mode super-luminescent diode with 85 nm bandwidth for application in optical coherence tomography (OCT). First, we describe the effect of quantum dot (QD) growth temperature on optical spectrum and gain, highlighting the need for the optimization of epitaxy for broadband applications. Then, by incorporating this improved material into a multicontact device, we show how bandwidth and power can be controlled. We then go on to show how the spectral shape influences the autocorrelation function, which exhibits a coherence length of < 11 mu m, and relative noise is found to be 10 dB lower than that of a thermal source. Finally, we apply the optimum device to OCT of in vivo skin and show the improvement...
We describe a simple swept-laser design that characterizes the emission bandwidth, linewidth, spectr...
peer-reviewedOptical Coherence Tomography (OCT) is a well-established non-invasive imaging technolo...
In this paper, we will discuss the necessary properties of the light source needed for high resoluti...
We present a 18 m W fiber-coupled single-mode super-luminescent diode with 85 nm bandwidth for appli...
We present a 18 mW fiber-coupled single-mode superluminescent diode with 85 nm bandwidth for applica...
We present a high-power (18 mW continuous wave exiting a single-mode fiber and 35 mW exiting the fac...
We demonstrate imaging performance of a high power quantum-dot superluminescent diode (15mW CW exiti...
Key device requirements for maximising resolution in an optical coherence tomography system are disc...
We developed a near-infrared (NIR) superluminescent diode (SLD) based on self-assembled InAs quantum...
Multi-contact chirped quantum dot superluminescent diodes are characterized with regard to key param...
We report a broadband-gain superluminescent diode (SLD) based on self-assembled InAsquantum dots(QDs...
We report on Chemical Beam Epitaxy (CBE) growth of wavelength tunable InAs/GaAs quantum dots (QD) ba...
We present a swept-source laser based on a quantum-dot semiconductor optical amplifier (QD SOA) (des...
We describe a simple swept-laser design that characterizes the emission bandwidth, linewidth, spectr...
peer-reviewedOptical Coherence Tomography (OCT) is a well-established non-invasive imaging technolo...
In this paper, we will discuss the necessary properties of the light source needed for high resoluti...
We present a 18 m W fiber-coupled single-mode super-luminescent diode with 85 nm bandwidth for appli...
We present a 18 mW fiber-coupled single-mode superluminescent diode with 85 nm bandwidth for applica...
We present a high-power (18 mW continuous wave exiting a single-mode fiber and 35 mW exiting the fac...
We demonstrate imaging performance of a high power quantum-dot superluminescent diode (15mW CW exiti...
Key device requirements for maximising resolution in an optical coherence tomography system are disc...
We developed a near-infrared (NIR) superluminescent diode (SLD) based on self-assembled InAs quantum...
Multi-contact chirped quantum dot superluminescent diodes are characterized with regard to key param...
We report a broadband-gain superluminescent diode (SLD) based on self-assembled InAsquantum dots(QDs...
We report on Chemical Beam Epitaxy (CBE) growth of wavelength tunable InAs/GaAs quantum dots (QD) ba...
We present a swept-source laser based on a quantum-dot semiconductor optical amplifier (QD SOA) (des...
We describe a simple swept-laser design that characterizes the emission bandwidth, linewidth, spectr...
peer-reviewedOptical Coherence Tomography (OCT) is a well-established non-invasive imaging technolo...
In this paper, we will discuss the necessary properties of the light source needed for high resoluti...