Polarization dynamics in spin‐VCSELs with integrated surface grating for high birefringence splitting

Author:

Lindemann Markus1ORCID,Jung Natalie1,Manrique‐Nieto Nicolas1,Pusch Tobias2,Michalzik Rainer2,Gerhardt Nils C.1,Hofmann Martin R.1

Affiliation:

1. Photonics and Terahertz Technology Ruhr‐University Bochum Bochum Germany

2. Institute of Functional Nanosystems Ulm University Ulm Germany

Abstract

AbstractPolarization dynamics in spin‐polarized vertical‐cavity surface‐emitting lasers (spin‐VCSELs) with high birefringence have recently been demonstrated to offer very high potential for optical data‐transmission systems that outperform their counterparts based on conventional direct current modulation by far. For polarization dynamics in spin‐VCSELs, the birefringence determines the resonance frequency and thus the modulation bandwidth. In previous work, birefringence was controlled using mechanical strain, which lacks the ability to be integrated in standard VCSEL manufacturing processes. In this work the polarization dynamics of a VCSEL with an integrated birefringence control mechanism is demonstrated based on custom designed integrated surface gratings. It is found that, despite the surface grating which is commonly known to stabilize the polarization, the presented spin‐VCSELs are able to generate polarization oscillations with frequencies corresponding to the birefringence induced by the surface grating and show polarization dynamics up to 68 GHz.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Institution of Engineering and Technology (IET)

Subject

Electrical and Electronic Engineering

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