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Performance and aging of a high power 2-D laser diode array.
Applied Optics
|June 18, 2010
Summary
High power laser diode arrays experienced a 23% output power degradation and a 3-nm red shift after 5.9 x 10^7 shots. These performance changes impact their use in solid-state laser pumping applications.
Area of Science:
- Optics and Photonics
- Materials Science
- Semiconductor Devices
Background:
- High power laser diode arrays are crucial components in various applications, including solid-state laser pumping.
- Understanding the long-term performance degradation of these arrays is essential for reliable system design and operation.
Purpose of the Study:
- To investigate the effects of operational shot life on the performance characteristics of high power laser diode arrays.
- To quantify degradation in output power, spectral properties, and beam patterns over extended operation.
Main Methods:
- A high power laser diode array was subjected to 5.9 x 10^7 operational shots at a power density of 1 kW/cm^2.
- Measurements were conducted to assess output power, emission spectrum, near-field, and far-field patterns before and after the operational period.
Main Results:
- A significant 23% degradation in output power was observed.
- A 3-nm red shift in the emission maximum was recorded.
- Changes in near-field and far-field patterns were also documented, indicating performance alterations.
Conclusions:
- Extended shot life leads to measurable degradation in high power laser diode array performance.
- The observed power drop and spectral shift have direct implications for the efficiency and suitability of these arrays in solid-state laser pumping.
- Further research into mitigating degradation mechanisms is warranted for improved device longevity.

