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Laser Adventures: Igniting Curiosity (and Matchsticks!) One Beam at a Time

Laser Adventures: accendere la curiosità (e i fiammiferi!) un raggio alla volta

Attenzione, appassionati del laser e curiosi!

Ti sei mai chiesto cosa succede quando punti un laser ad alta potenza su un fiammifero? O che ne dici di accendere una sigaretta con pura energia luminosa? Bene, allaccia le cinture, perché stiamo per tuffarci nel fuoco mondo dei laser ad alta potenza!

Laser 101: il potere interiore

Innanzitutto, chiariamo di cosa stiamo parlando. Un laser ad alta potenza è come un normale puntatore laser sotto steroidi. È un dispositivo portatile e palmare che emette un raggio di luce concentrato con densità di potenza estrema . Ciò significa che può concentrare tutta la sua energia in un punto minuscolo, creando calore intenso . E quando diciamo intenso, intendiamo BRUCIANTE !

Esperimento 1: la sfida del fiammifero

Immagina un normale puntatore laser con una torsione: ha una potente lente che può focalizzare il raggio di luce come un cannone laser. In questo esperimento, abbiamo utilizzato un laser da 250 mW per... accendere un fiammifero da 2 metri di distanza ! Sì, hai letto bene. Con il laser puntato, la punta nera del fiammifero ha preso fuoco in pochi secondi, trasformandosi in una brace ardente. Perfino un normale fiammifero non ha resistito alla potenza del laser, soccombendo alle sue fiamme in meno di 2 secondi.

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Attenuation and shrinking beam simulation for beam quality measurement of high-power lasers

Attenuation and shrinking beam simulation for beam quality measurement of high-power lasers

fangyun DAI @

Beam quality factor is the main parameter to characterize the transverse pattern of high-power lasers, and in order to solve the problem that the current beam quality analyzer can only be used for beam quality evaluation of small-aperture and low-power lasers, the principle and simulation of attenuation and beam reduction technology for beam quality measurement of high-power lasers were studied. The simulation model of the attenuation and shrinking beam component is established, and the thermally induced aberrations of optical components under high-power laser are studied by using the finite element method, and it is concluded that when the peak-to-trough (PV) value of thermally induced aberrations is less than 82 nm, the influence on the beam quality factor is less than 5%. As the beam passes through the attenuation component, if debias occurs, the beam quality factor will be smaller. Based on the Zenic polynomial and the beam quality factor calculation model, the influence of the wavefront distortion of the beam shrinking component on the measurement is studied and analyzed, and it is seen through the Zemax simulation analysis that the influence on the beam quality factor measurement is less than 5% when the angle of view between the incident light and the center optical axis of the beam shrinking component is less than 7° during the assembly and adjustment.
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Depth: Research progress of high-power semiconductor lasers

Depth: Research progress of high-power semiconductor lasers

HighPowerLaser @

Laser is another major invention of mankind since the 20th century, after atomic energy, electronic computers, and semiconductors. Semiconductor laser science and technology takes semiconductor laser devices as the core, covering the study of the law, generation method, device technology, control means and application technology of stimulated radiation amplification of light, and the required knowledge integrates geometric optics, physical optics, semiconductor electronics, thermodynamics and other disciplines.

After more than 50 years of development, semiconductor laser, as a world-class research direction, has developed by leaps and bounds along with international scientific and technological progress, and has also benefited from breakthroughs in various related technologies, materials and processes. The progress of semiconductor laser has received great attention and attention in the international scope, not only in the field of basic science and continuous research and deepening, the level of science and technology continues to improve, but also in the field of application continues to expand and innovate, the application of technology and equipment emerge in an endless stream, the application level has also been greatly improved, in the national economic development of all countries in the world, especially in the fields of information, industry, medical and national defense has been an important application.

At present, the development of semiconductor lasers in the world is in a new stage of rapid development, and China's laser science and technology has basically maintained a trend of synchronous development with the world. From the perspective of comprehensive social development, industrial economic upgrading, national defense and security application and economic structure transformation, from the perspective of national competitive development, more clear needs are put forward for the comprehensive innovation of semiconductor laser technology and the transformation and development of industrial applications. In this paper, the development history and current situation of semiconductor lasers are reviewed, and the achievements of Changchun Institute of Optics, Fine Mechanics and Physics in recent years in high-power semiconductor lasers, especially in high-power semiconductor laser laser light sources, vertical cavity surface-emitting lasers and new laser chips.

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