US2013235891A1PendingUtilityA1

Wavelength monitor, wavelength lockable laser diode and method for locking emission wavelength of laser diode

Assignee: SUMITOMO ELECTRIC INDUSTRIESPriority: Oct 13, 2011Filed: Apr 19, 2013Published: Sep 12, 2013
Est. expiryOct 13, 2031(~5.2 yrs left)· nominal 20-yr term from priority
H01S 5/1209H01S 5/0687H01S 5/1212H01S 3/13H01S 5/06256H01S 5/02325
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Claims

Abstract

A wavelength monitor monolithically integrated with a tunable LD is disclosed. The wavelength monitor includes at least two filters, each having a periodic transmission sptectrum but a period between nearest neighbor periods is different from the other. A transmittance of the first filter and another transmittance of the second filter at a grid wavelength attributed to the WDM system forms a combination which is specific to the grid wavelength bur different from other combinations at other grid wavelengths.

Claims

exact text as granted — not AI-modified
1 .- 7 . (canceled) 
     
     
         8 . A wavelength lockable LD, comprising:
 a tunable LD to emit light with an emission wavelength substantially coincident with a target grid wavelength of a WDM system, the tunable LD including a SG-DFB region and a CSG-DBR region, the CSG-DBR region providing a plurality of heaters monolithically integrated therein;   a wavelength monitor including a first optical filter and a second optical filter, the first optical filter having a first transmittance spectrum periodically varying in a wavelength range of the WDM system, the second optical filter having a second transmittance spectrum periodically varying in the wavelength range, the first transmittance spectrum and the second transmittance spectrum at the target grid wavelength having a combination in respective transmittances specific to the target grid wavelength different from combinations in transmittances at other grid wavelengths; and   a controller to tune the emission wavelength of the tunable LD such that the first optical filter and the second optical filter show a combination in respective transmittances equal to the combination at the grid wavelength by applying a bias to the SG-DFB region and heater powers to the heaters in the CSG-DBR region.   
     
     
         9 . The wavelength lockable LD of  claim 8 ,
 wherein the first optical filter and the second optical filter has an arrangement selected from a group of a ring filter and a Mach-Zender filter.   
     
     
         10 : The wavelength lockable LD of  claim 8 ,
 wherein the first transmittances spectrum at respective grid wavelengths have substantially constant transmittance in the wavelength range, and   wherein the second transmittance spectrum at respective grid wavelengths have transmittances monotonically varying in the wavelength range.   
     
     
         11 . The wavelength lockable LD of  claim 10 ,
 wherein the first transmittance spectrum varies N cycles in the wavelength range, and the second transmittance spectrum varies less than N cycles but greater than N−0.5 cycles in the wavelength range.   
     
     
         12 . The wavelength lockable LD of  claim 11 ,
 wherein the second transmittance spectrum varies less than N cycles but greater than N−0.1 cycles in the wavelength range.   
     
     
         13 . The wavelength lockable LD of  claim 8 ,
 wherein the tunable LD has an arrangement selected from a group of a Fabry-Perot LD and a DFB LD, and   wherein the controller controls a temperature of the tunable LD to tune the emission wavelength thereof.   
     
     
         14 . A wavelength lockable LD, comprising:
 a tunable LD to emit light with an emission wavelength substantially coincident with a target grid wavelength of a WDM system, the tunable LD including a gain region, and two SG-GBR regions putting the gain region therebetween,   a wavelength monitor including a first optical filter and a second optical filter, the first optical filter having a first transmittance spectrum periodically varying in a wavelength range of the WDM system, the second optical filter having a second transmittance spectrum periodically varying in the wavelength range, the first transmittance spectrum and the second transmittance spectrum at the target grid wavelength having a combination in respective transmittances specific to the target grid wavelength different from combinations in transmittances at other grid wavelengths; and   a controller to tune the emission wavelength of the tunable LD such that the first optical filter and the second optical filter show a combination in respective transmittances equal to the combination at the grid wavelength by applying biases to the gain region and two SG-DBR regions.   
     
     
         15 . (canceled) 
     
     
         16 . A method to tune an emission wavelength of a wavelength lockable LD to a target grid wavelength of a WDM system, the wavelength lockable LD including a tunable LD and a wavelength monitor monolithically integrated with the tunable LD, the tunable LD including a SG-DFB region and a CSG-DBR region, the CSG-DBR regions providing a plurality of heaters monolithically integrated therein, the wavelength monitor including a first optical filter having a first periodic transmittance spectrum and a second optical filter having a second periodic transmittance spectrum, the first periodic transmittance spectrum and the second periodic transmittance spectrum having a specific combination in respective transmittances at the target grid wavelength different from combinations in transmittances at other grid wavelengths, the method comprising steps of:
 guiding light generated by the tunable LD to the first optical filter and the second optical filter;   detecting a first output of the first optical filter, and a second output of the second optical filter;   tuning the emission wavelength of the tunable LD based on the first output so as to set the first output equal to a first preset transmittance for the first periodic transmittance spectrum by applying a bias to the SG-DFB region and heater powers to the heaters in the CSG-DBR region; and   verifying the emission wavelength of the tunable LD by comparing the second output with a second preset transmittance of the second periodic transmittance spectrum,   wherein the first preset transmittance and the second preset transmittance constitute the specific combination at the target grid wavelength.   
     
     
         17 . The method of  claim 16 ,
 further including steps of, when the first output and the second output are offset from the specific combination, tuning the emission wavelength based on the second output and tuning again the emission wavelength based on the first output again after verifying the emission wavelength.   
     
     
         18 . The method of  claim 16 ,
 wherein said step of tuning the emission wavelength includes a step of varying a temperature of the tunable LD to tune the emission wavelength thereof when the tunable LD has an arrangement selected from a group of Fabry-Perot type and DFB type.   
     
     
         19 . (canceled) 
     
     
         20 . (canceled)

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