Optical semiconductor device, semiconductor laser module, and optical fiber amplifier
An optical semiconductor device outputting a predetermined wavelength of laser light includes: a quantum well active layer positioned between a p-type cladding layer and an n-type cladding layer in thickness direction; a separate confinement heterostructure layer positioned between the quantum well active layer and the n-type cladding layer; and an electric-field-distribution-control layer positioned between the separate confinement heterostructure layer and the n-type cladding layer and configured by at least two semiconductor layers having band gap energy greater than band gap energy of a barrier layer constituting the quantum well active layer.
1. A semiconductor optical amplifier configured to amplify a predetermined wavelength of light comprising:
a quantum well active layer positioned between a p-type cladding layer and an n-type cladding layer in thickness direction;
a separate confinement heterostructure layer positioned between the quantum well active layer and the n-type cladding layer; and
an electric-field-distribution-control layer positioned between the separate confinement heterostructure layer and the n-type cladding layer and configured by at least two semiconductor layers having band gap energy greater than band gap energy of a barrier layer constituting the quantum well active layer.
2. A semiconductor laser module comprising:
a semiconductor optical amplifier configured to amplify a predetermined wavelength of laser light including:
a quantum well active layer positioned between a p-type cladding layer and an n-type cladding layer in thickness direction,
a separate confinement heterostructure layer positioned between the quantum well active layer and the n-type cladding layer, and
an electric-field-distribution-control layer positioned between the separate confinement heterostructure layer and the n-type cladding layer and configured by at least two semiconductor layers having band gap energy greater than band gap energy of a barrier layer constituting the quantum well active layer;
a semiconductor laser element configured to output laser light to be amplified by the semiconductor optical amplifier;
a temperature-control module configured to control temperature of the semiconductor laser element;
an optical fiber configured to guide the laser light amplified by and outputted from the semiconductor optical amplifier to outside; and
an optical-coupling lens system optically coupling the semiconductor optical amplifier and the optical fiber.