News: Suppliers
27 July 2026
Photon Design enables multi-junction VCSEL simulation for high-power applications
Photonic simulation CAD software developer Photon Design Ltd of Oxford, UK says that it has enabled pioneering, multi-junction vertical-cavity surface-emitting laser (VCSEL) simulation, within its HAROLD simulation tool.

Multi-junction VCSELs deliver higher optical power than traditional VCSELs, while retaining their compact, efficient, manufacturable and reliable design. Instead of one gain junction, a multi-junction VCSEL has several junctions stacked vertically within its epitaxy. Efficiency comes from using the same current across the multiple gain junctions. This enables either a higher optical power for the same current, or a longer lifetime and reliability from delivering single-junction power levels with less current and therefore generating less heat. The high power and efficiency of multi-junction VCSELs is contributing to their rapid uptake in many markets, including high-speed datacoms, machine vision, longer-range automotive LiDAR and consumer 3D sensing applications such as facial recognition.
“Photon Design’s HAROLD simulation tool supports the demanding design requirements of multi-junction VCSELs, providing thorough 3D optical, electrical and thermal simulations,” says CEO Dr Dominic Gallagher. “HAROLD shows engineers how additional junctions can raise output power, before efficiency then declines as a result of losses in what is now a larger epitaxy structure,” he adds. “HAROLD provides designers with band diagrams using 3D drift-diffusion modelling of the energy-band structure; thermal analysis of current-induced temperature gradients and their effect on gain; and rigorous output-power predictions from combining the 3D optical profile of the DBR gratings with simulated gain spectra.”
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