Title of article :
A 2-kW COIL with a square pipe-array JSOG and nitrogen buffer gas
Author/Authors :
Sang، Fengting نويسنده , , Chen، Fang نويسنده , , Fang، Benjie نويسنده , , Zhang، Yuelong نويسنده , , Jin، Yuqi نويسنده , , Wang، Zengqiang نويسنده , , Li، Qingwei نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Abstract :
A 2-kW-class chemical oxygen-iodine laser (COIL) using nitrogen buffer gas has been developed and tested since industrial applications of COIL devices will require the use of nitrogen as the buffer gas. The laser, with a gain length of 11.7 cm, is energized by a square pipe-array jet-type singlet oxygen generator (SPJSOG) and employs a nozzle bank with a designed Mach number of 2.5. The SPJSOG has advantages over the traditional plate-type JSOG in that it has less requirements on basic hydrogen peroxide (BHP) pump, and more important, it has much better operational stability. The SPJSOG without a cold trap and a gas-liquid separator could provide reliable operations for a total gas flow rate up to 450 mmol/s and with a low liquid driving pressure of around 0.7 atm or even lower. The nozzle bank was specially designed for a COIL using nitrogen as the buffer gas. The cavity was designed for a Mach number of 2.5, in order to provide a gas speed and static temperature in the cavity similar to that for a traditional COIL with helium buffer gas and a Mach 2 nozzle. An output power of 2.6 kW was obtained for a chlorine flow rate of 140 mmol/s, corresponding to a chemical efficiency of 20.4%. When the chlorine flow rate was reduced to 115 mmol/s, a higher chemical efficiency of 22.7% was attained. Measurements showed that the SPJSOG during normal operation could provide a singlet oxygen yield Y>55%, a chlorine utilization U>85%, and a relative water vapor concentration w=[H/sub 2/O]/([O/sub 2/]+[Cl/sub 2/]) <0.1.
Keywords :
Intersubband transitions , nonlinear optics , Quantum wells , quantum cascade laser , multiple-wavelength emission , Second-harmonic generation , mid-infrared
Journal title :
IEEE JOURNAL OF QUANTUM ELECTRONICS
Journal title :
IEEE JOURNAL OF QUANTUM ELECTRONICS