We present a novel semi-analytical method utilising modal index analysis, for modelling the field resonances of photonic crystal surface emitting lasers (PCSELs). This method shows very good agreement with other modelling techniques in terms of mode calculations, with the added advantages of computational simplicity, the calculation of threshold gain, and rapid analysis of finite structures. We are able to model the effect of external lateral feedback and simulations indicate that the near-field peak can be electronically displaced and the threshold as well as the frequency can be controlled through external in-plane feedback, paving the way to dynamic control of PCSELs
This paper considers multiple structural designs for photonic crystal surface emitting lasers operat...
We show comparison of four different numerical methods for simulating Photonic-Crystal (PC) VCSELs. ...
Photonic crystals (PhCs) have wavelength scale periodically alternating refractive indexes. Photon i...
We present a novel semi-analytical method utilising modal index analysis, for modelling the field re...
We present a novel semi-analytical method for modelling the resonances of photonic crystal surface e...
This paper presents a new modal index analysis method for evaluating the resonances of PCSEL structu...
The frequently sought after combination of characteristics in semiconductor lasers of high power tog...
Probabilistic Markov chain modeling of photonic crystal surface emitting lasers (PCSELs) is reported...
We present a theoretical analysis of lasing action in photonic crystal surface-emitting lasers (PCSE...
We demonstrate a semiconductor PCSEL array that uniquely combines an in-plane waveguide structure wi...
The performance of a semiconductor laser for many applications is often largely determined by how we...
Abstract — We have investigated the influence of various thicknesses on different layers in GaAs-bas...
We report the small-signal characterization of a PCSEL device, extracting damping factors and modula...
In this paper, we show the effect of lateral external optical feedback on an all semiconductor phot...
Selected results of a numerical analysis of the spatial part of the optical mode in Photonic Crystal...
This paper considers multiple structural designs for photonic crystal surface emitting lasers operat...
We show comparison of four different numerical methods for simulating Photonic-Crystal (PC) VCSELs. ...
Photonic crystals (PhCs) have wavelength scale periodically alternating refractive indexes. Photon i...
We present a novel semi-analytical method utilising modal index analysis, for modelling the field re...
We present a novel semi-analytical method for modelling the resonances of photonic crystal surface e...
This paper presents a new modal index analysis method for evaluating the resonances of PCSEL structu...
The frequently sought after combination of characteristics in semiconductor lasers of high power tog...
Probabilistic Markov chain modeling of photonic crystal surface emitting lasers (PCSELs) is reported...
We present a theoretical analysis of lasing action in photonic crystal surface-emitting lasers (PCSE...
We demonstrate a semiconductor PCSEL array that uniquely combines an in-plane waveguide structure wi...
The performance of a semiconductor laser for many applications is often largely determined by how we...
Abstract — We have investigated the influence of various thicknesses on different layers in GaAs-bas...
We report the small-signal characterization of a PCSEL device, extracting damping factors and modula...
In this paper, we show the effect of lateral external optical feedback on an all semiconductor phot...
Selected results of a numerical analysis of the spatial part of the optical mode in Photonic Crystal...
This paper considers multiple structural designs for photonic crystal surface emitting lasers operat...
We show comparison of four different numerical methods for simulating Photonic-Crystal (PC) VCSELs. ...
Photonic crystals (PhCs) have wavelength scale periodically alternating refractive indexes. Photon i...