Invention Grant
- Patent Title: Wavelength-stabilized near-field optoelectronic device
-
Application No.: US16656323Application Date: 2019-10-17
-
Publication No.: US10777969B1Publication Date: 2020-09-15
- Inventor: Vitaly Shchukin , Nikolay Ledentsov
- Applicant: VI Systems GmbH
- Applicant Address: DE Berlin
- Assignee: VI SYSTEMS GmbH
- Current Assignee: VI SYSTEMS GmbH
- Current Assignee Address: DE Berlin
- Agency: Gordon Rees Scully Mansukkani, LLP
- Main IPC: H01S5/183
- IPC: H01S5/183 ; H01S5/22 ; H01S5/20 ; H01S5/02 ; H01S5/10 ; H01S5/42 ; H01S5/026

Abstract:
An in-plane-emitting semiconductor diode laser employs a surface-trapped optical mode existing at a boundary between a distributed Bragg reflector and a homogeneous medium, dielectric or air. The device can operate in both TM-polarized and TE-polarized modes. The mode exhibits an oscillatory decay in the DBR away from the surface and an evanescent decay in the dielectric or in the air. The active region is preferably placed in the top part of the DBR close to the surface. The mode behavior strongly depends on the wavelength of light, upon increase of the wavelength the mode becomes more and more extended into the homogeneous medium, the optical confinement factor of the mode in the active region drops until the surface-trapped mode vanishes. Upon a decrease of the wavelength, the leakage loss of the mode into the substrate increases. Thus, there is an optimum wavelength, at which the laser threshold current density is minimum, and at which the lasing starts. This optimum wavelength is temperature-stabilized, and shifts upon temperature increase at a low rate less than 0.1 nm/K, indicating wavelength-stabilized operation of the device. The approach applies also to semiconductor optical amplifiers or semiconductor gain chips which are also wavelength-stabilized. Reflectivity of the surface-trapped mode from an uncoated facet of the device can be extremely low, also
Public/Granted literature
- US20200313392A1 WAVELENGTH-STABILIZED NEAR-FIELD OPTOELECTRONIC DEVICE Public/Granted day:2020-10-01
Information query