Multi-step waveguide tapering to couple light from a light source to a ridge waveguide
View Patent ↗A waveguide for an optical modulator system includes multiple tapered portions, or regions, designed to couple a CMBH laser light source to a ridge modulator. Using a waveguide with different tapered portions, transmission efficiency between the CMBH light source and the ridge modulator is improved, thus allowing the optical modulator to be used in high-speed applications. Waveguide described herein may include tapered portions in which, along a single direction, include one portion that tapers to a reduced width while another portion tapers to an increased width.
1 . An optical modulator, comprising:
a waveguide configured to couple light from a CMBH light source to a ridge modulator, the waveguide comprising:
a first section, a second section, and a third section that are consecutive along a direction of the light from the CMBH light source;
a first waveguide portion comprising a core; and
a second waveguide portion comprising multiple layers of clad integrated with the first waveguide portion, wherein:
at the first section of the waveguide, the first waveguide portion comprises a first decreasing taper and the second waveguide portion comprises a first increasing taper,
at the second section of the waveguide, the second waveguide portion comprises a second increasing taper different from the first increasing taper and the first waveguide portion comprises a second decreasing taper different from the first decreasing taper,
at the third section, the first waveguide portion comprises a constant width until an end of the waveguide, and
the first waveguide portion is positioned within the second waveguide portion.
2 . The optical modulator of claim 1 , wherein the first section is closer to the CMBH light source than the second section.
3 . The optical modulator of claim 1 , wherein along a single direction:
the first decreasing taper defines a decreasing width,
the first increasing taper defines a first increasing width, and
the second increasing taper defines a second increasing width.
4 . The optical modulator of claim 1 , wherein the second section is i) longer than the first section and ii) longer than the third section.
5 . The optical modulator of claim 1 , wherein:
the second waveguide portion comprises a sub-section positioned within the first waveguide portion, and
the sub-section comprises a constant width.
6 . The optical modulator of claim 1 , wherein at the first section:
the first waveguide portion comprises a first width, and
the second waveguide portion comprises a second width less than the first width.
7 . The optical modulator of claim 1 , wherein at the first section:
the first waveguide portion comprises a first width, and
the second waveguide portion comprises a second width greater than the first width.
8 . The optical modulator of claim 1 , wherein at the second section:
the first waveguide portion comprises a first width, and
the second waveguide portion comprises a second width equal to the first width.
9 . The optical modulator of claim 1 , wherein the first waveguide portion comprises a CMBH laser waveguide and the second waveguide portion comprises a ridge waveguide.
10 . A waveguide for an optical modulator, the waveguide comprising:
a first section, a second section, and a third section that are consecutive along a direction of the waveguide;
a first waveguide portion comprising a core configured to modulate light from a laser light source of the optical modulator; and
a second waveguide portion comprising multiple layers of clad integrated with the first waveguide portion, wherein the laser light source is integrated with the first waveguide portion and the first waveguide portion is positioned within the second waveguide portion, wherein:
at the second section of the waveguide, the second waveguide portion comprises a first increasing taper and the first waveguide portion comprises a first decreasing taper, and
at the third section, the first waveguide portion comprises a constant width until an end of the waveguide.
11 . The waveguide of claim 10 , wherein:
at the first section, the first waveguide portion comprises a second decreasing taper different from the first decreasing taper and the second waveguide portion comprises a second increasing taper different from the first increasing taper.
12 . The waveguide of claim 11 , wherein at the third section, the second waveguide portion comprises a third increasing taper different from the first increasing taper.
13 . An integrated circuit, comprising:
a laser light source; and
a tapered waveguide comprising:
a modulator configured to modulate light from the laser light source;
an isolation section configured to guide the light, wherein the isolation section is positioned within the modulator; and
a first section, a second section, and a third section that are consecutive along a direction of the light from the laser light source, wherein:
at the second section of the tapered waveguide, a second waveguide portion comprises an increasing taper and a first waveguide portion comprises a decreasing taper,
the first waveguide portion is positioned within the second waveguide portion, and
at the third section, the first waveguide portion comprises a constant width until an end of the tapered waveguide.
14 . The integrated circuit of claim 13 , wherein:
the tapered waveguide includes the first waveguide portion and the second waveguide portion,
the laser light source is integrated with the first waveguide portion, and
the modulator is integrated with the second waveguide portion.
15 . The integrated circuit of claim 14 , wherein:
the first waveguide portion comprises a first tapered waveguide portion, and
the second waveguide portion a second tapered waveguide portion.
16 . The integrated circuit of claim 14 , wherein:
at the first section, the first waveguide portion is wider than the second waveguide portion, and
at the second section, the first waveguide portion is narrower than the second waveguide portion.