DURIP-94: Phase Conjugate Injection Locking of Laser Diode Arrays

DURIP-94: Phase Conjugate Injection Locking of Laser Diode Arrays PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 5

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Book Description
This is an 'equipment only' grant under the Defense University Research Instrumentation Program. A report of the results obtained with this equipment is contained in the final report for Grant F49620-95-1-0082, 'Phase-Conjugate Injection Locking of Laser Diode Arrays.' To avoid duplication of paperwork, only a partial summary of that report will be duplicated here. This grant is to produce high-brightness, narrow-frequency light beams from semiconductor laser arrays using optical phase conjugation. The investigators recently demonstrated that their proposed techniques are both practical and efficient, and can be applied to commercially available semiconductor lasers. Their experiments coupled an optical phase conjugator to a broad-area semiconductor laser, causing the laser to emit a 0.5 watt, near-diffraction-limited output beam. Their system is simple and compact, and it also automatically adjusts for any frequency drift or gradual misalignment of the optical components. The investigators extended their techniques from single, broad-area lasers to powerful semiconductor laser arrays.

DURIP-94: Phase Conjugate Injection Locking of Laser Diode Arrays

DURIP-94: Phase Conjugate Injection Locking of Laser Diode Arrays PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 5

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Book Description
This is an 'equipment only' grant under the Defense University Research Instrumentation Program. A report of the results obtained with this equipment is contained in the final report for Grant F49620-95-1-0082, 'Phase-Conjugate Injection Locking of Laser Diode Arrays.' To avoid duplication of paperwork, only a partial summary of that report will be duplicated here. This grant is to produce high-brightness, narrow-frequency light beams from semiconductor laser arrays using optical phase conjugation. The investigators recently demonstrated that their proposed techniques are both practical and efficient, and can be applied to commercially available semiconductor lasers. Their experiments coupled an optical phase conjugator to a broad-area semiconductor laser, causing the laser to emit a 0.5 watt, near-diffraction-limited output beam. Their system is simple and compact, and it also automatically adjusts for any frequency drift or gradual misalignment of the optical components. The investigators extended their techniques from single, broad-area lasers to powerful semiconductor laser arrays.

Phase Conjugate Injection Locking of Laser Diode Arrays

Phase Conjugate Injection Locking of Laser Diode Arrays PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

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Book Description
This goal of this project is to produce a high-brightness, narrow-frequency light beam from a semiconductor laser array. We used a mutually-pumped phase conjugator to couple a single-frequency master laser into a high-power diode laser array. This injected light narrowed the frequency bandwidth of the laser array's output beam. Tuning the master laser (by adjusting its current or its temperature) then smoothly tuned the laser array, while the output beam remained diffraction limited. We compared the performance of the four types of mutually-pumped phase conjugators for injecting light into a laser array. We also invented a new technique for detecting domains hidden in photorefractive crystals. We also measured the phase of the light produced by frequency doubling in a self-phase matched optical fiber. We also measured the anisotropy of the mobility of holes in barium titanate crystals. We found that the drift mobility perpendicular to the crystal's c-axis is 40 times that along the c-axis. We also measured the calibrated small-signal gain spectrum, over a range of eight orders of magnitude, of a single-mode, flared semiconductor amplifier. We found that the detailed-balance theory of semiconductor lasers theory is not consistent with our data. We used a self-pumped phase conjugator to determine a key calibration constant in our experiments.

Single-element Optical Injection Locking of Diode-laser Arrays

Single-element Optical Injection Locking of Diode-laser Arrays PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
By optically injecting a single end-element of a semiconductor laser array, both the spatial and spectral emission characteristics of the entire laser array is controlled. With the output of the array locked, the farfield emission angle of the array is continuously scanned over several degrees by varying the injection frequency.

Laser injection locking of lithium diodes. An experimental approach with a 660 nm thorlabs diode and a 675 nm Ushio laser diode

Laser injection locking of lithium diodes. An experimental approach with a 660 nm thorlabs diode and a 675 nm Ushio laser diode PDF Author:
Publisher: GRIN Verlag
ISBN: 3346581845
Category : Science
Languages : en
Pages : 43

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Book Description
Bachelor Thesis from the year 2021 in the subject Physics - Applied physics, grade: 1,0, University of Tubingen, language: English, abstract: The goal of this work is to find a stable injection lock setup with over 100 mW of output power. There are two diodes characterized for this aim while injection locking them. One is available at Thorlabs with a center wavelength of 660 nm and up to 120 mW of output power in the free-running state. The other diode manufactured by Ushio is not yet readily available on the market but has a center wavelength of 675 nm with up to 0,25 W of output power and can be directly operated at 671 nm by lowering the temperature. There are concerns that this temperature would be below the dew point, especially in summer. This causes condensation on the diode from the water vapor in the air, explaining why this diode is tested only via the second approach. In Section 2 a short introduction into semiconductor laser physics is explaining the working principle of laser diodes. Additionally, the injection locking theory and the Gaussian beam model are discussed. The experimental setup and instrument control are described in Section 3. This is followed by the characterization of the Thorlabs diode with a center wavelength of 660 nm in Section 4 and the Ushio diode with a center wavelength of 675 nm at appropriate temperatures in Section 5. An outlook on further improving the setup by actively stabilizing the injection lock is given in Section 6. In cold atom experiments for laser cooling and trapping of atoms, laser powers of more than 100 mW are often required. Furthermore, magneto-optical traps, while loading, are in need of sufficient power to reduce the number of atoms lost on the way. The output power of an external cavity diode laser does not produce enough output power for such applications. Alternatively, tapered amplifiers are a way to produce sufficient output power. These are currently not available for the targeted laser cooling wavelength for lithium of 671nm. However, injection locking of free-running, high power diodes is an alternative to tapered amplifiers for delivering enough output power. This is a technique to produce higher output power at a stable frequency. To achieve this, a weak signal of typically a few mW of an external cavity diode "seed" laser is injected into a free-running "slave" diode, which is capable of higher output power.

Frequency Stabilization and Phase Locking of Laser Diodes and Laser Arrays

Frequency Stabilization and Phase Locking of Laser Diodes and Laser Arrays PDF Author: L. Goldberg
Publisher:
ISBN:
Category :
Languages : en
Pages : 10

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Book Description
The major accomplishments for FY 86 were: 1. Demonstration of efficient coupling of an injection locked laser array single lobe output into a single mode optical fiber. A coupling efficiency of 30% was achieved for a 40-element array emitting 500 mW, corresponding to a fiber output power of 150 mW. 2. Demonstration of a novel external ring laser cavity operation of a gain guided array. The ring cavity relies on self-injection locking of the array by its own spatially filtered output. As in the case of injection locking, the ring laser external cavity results in single diffraction limited lobe far field emission of the array, but with the added advantage of eliminating the need for a separate master laser and the associated wavelength and temperature requirements.

The Mutual Coherence of Simultaneously Injection-locked Laser Diode Arrays

The Mutual Coherence of Simultaneously Injection-locked Laser Diode Arrays PDF Author: L.R. Brewer
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Diode Laser Arrays

Diode Laser Arrays PDF Author: Dan Botez
Publisher: Cambridge University Press
ISBN: 0521419751
Category : Science
Languages : en
Pages : 468

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Book Description
This book provides a thorough overview of the principles and uses of semiconductor diode laser arrays. Coherent, incoherent, edge- and surface-emitting, horizontal- and vertical-cavity, individually addressed, lattice-matched and strained-layer arrays are all discussed in detail.

Monolithic Diode-Laser Arrays

Monolithic Diode-Laser Arrays PDF Author: Nils W. Carlson
Publisher: Springer Science & Business Media
ISBN: 3642789420
Category : Science
Languages : en
Pages : 405

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Book Description
Although semiconductor-diode lasers are the most compact, highest gain and most efficient laser sources, difficulties remain in developing structures that will produce high-quality, diffraction-limited output beams. Indeed, only a few designs have emerged with the potential for producing high-power, high-brightness monolithic sources. This book presents and analyzes the results of work performed over the past two decades in the development of such diode-laser arrays.

Injection Locking a Broad Area Diode Laser

Injection Locking a Broad Area Diode Laser PDF Author: William D. Lutmer
Publisher:
ISBN:
Category :
Languages : en
Pages : 42

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Multi-wavelength Injection Locking of Semiconductor Laser Diodes and Its Applications

Multi-wavelength Injection Locking of Semiconductor Laser Diodes and Its Applications PDF Author: Mei-po Fok
Publisher:
ISBN:
Category : Diodes, Semiconductor
Languages : en
Pages : 176

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Book Description