Título

A reconfigurable multimode interference splitter for sensing applications

Autor

DANIEL ALBERTO MAY ARRIOJA

JOSE JAVIER SANCHEZ MONDRAGON

ROMEO DE JESUS SELVAS AGUILAR

ISMAEL TORRES GOMEZ

Nivel de Acceso

Acceso Abierto

Resumen o descripción

A reconfigurable multimode interference (MMI) coupler is demonstrated.

The device operates by modifying the phase of the multiple images that are

formed around the midpoint of the MMI section. This modifies the

properties of the following set of images, and light can be directed to a

specific output waveguide, which is therefore ideal to develop a

reconfigurable MMI coupler. In our device the phase change is achieved by

current injection, and therefore minimizing current spreading is crucial for

optimal operation. A zinc in-diffusion process has been implemented to

selectively define p–n regions and effectively regulate current spreading by

controlling the depth of the zinc doping. Using this process, a

reconfigurable 3 dB MMI coupler has been fabricated. Our experimental

results revealed that the device can be easily set to a perfect 3 dB splitter

using only 0.7 mA of current injection. In addition, the device can be

adjusted all the way from a 90:10 to a 30:70 splitting ratio. The results are

very encouraging since, to our knowledge, this degree of tuning of the

optical power has never been experimentally demonstrated in MMI devices.

Furthermore, this concept can easily be applied to a wide variety of

semiconductor photonic switches that operate on MMI effects.

Editor

IOP Publishing Ltd

Fecha de publicación

12 de septiembre de 2007

Tipo de publicación

Artículo

Versión de la publicación

Versión aceptada

Formato

application/pdf

Idioma

Inglés

Audiencia

Estudiantes

Investigadores

Público en general

Sugerencia de citación

May-Arrioja, D.A., et al., (2007). A reconfigurable multimode interference splitter for sensing applications, Measurement Science and Technology 18 (2007): 3241–3246

Repositorio Orígen

Repositorio Institucional del INAOE

Descargas

727

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