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1.
Phys Rev Lett ; 120(8): 085704, 2018 Feb 23.
Artículo en Inglés | MEDLINE | ID: mdl-29543009

RESUMEN

We report on the experimental observation of high-power terahertz-radiation-induced damage in a thin aluminum film with a thickness less than a terahertz skin depth. Damage in a thin metal film produced by a single terahertz pulse is observed for the first time. The damage mechanism induced by a single terahertz pulse could be attributed to thermal expansion of the film causing debonding of the film from the substrate, film cracking, and ablation. The damage pattern induced by multiple terahertz pulses at fluences below the damage threshold is quite different from that observed in single-pulse experiments. The observed damage pattern resembles an array of microcracks elongated perpendicular to the in-plane field direction. A mechanism related to microcracks' generation and based on a new phenomenon of electrostriction in thin metal films is proposed.

2.
Opt Express ; 23(4): 4573-80, 2015 Feb 23.
Artículo en Inglés | MEDLINE | ID: mdl-25836494

RESUMEN

We investigated Terahertz generation in organic crystals DSTMS, DAST and OH1 directly pumped by a Cr:forsterite laser at central wavelength of 1.25 µm. This pump laser technology provides a laser-to-THz energy conversion efficiency higher than 3 percent. Phase-matching is demonstrated over a broad 0.1-8 THz frequency range. In our simple setup we achieved hundred µJ pulses in tight focus resulting in electric and magnetic field larger than 10 MV/cm and 3 Tesla.

3.
Opt Lett ; 39(23): 6632-5, 2014 Dec 01.
Artículo en Inglés | MEDLINE | ID: mdl-25490639

RESUMEN

We report on high-field terahertz transients with 0.9-mJ pulse energy produced in a 400 mm² partitioned organic crystal by optical rectification of a 30-mJ laser pulse centered at 1.25 µm wavelength. The phase-locked single-cycle terahertz pulses cover the hard-to-access low-frequency range between 0.1 and 5 THz and carry peak fields of more than 42 MV/cm and 14 Tesla with the potential to reach over 80 MV/cm by choosing appropriate focusing optics. The scheme based on a Cr:Mg2SiO4 laser offers a high conversion efficiency of 3% using uncooled organic crystal. The collimated pump laser configuration provides excellent terahertz focusing conditions.

4.
Bull Exp Biol Med ; 151(1): 154-6, 2011 May.
Artículo en Inglés | MEDLINE | ID: mdl-22442822

RESUMEN

Practical advantages of using femtosecond laser pulses for manipulations in cell surgery were demonstrated. The use of femtosecond laser pulses enables precision punching of the zona pellucida of the embryo without damaging its cells. With the help of femtosecond laser tweezers/scalpel, auxillary laser hatching was performed and a technique of optical biopsy of mammalian embryo was developed, which enabled non-contact sampling of embryonic material for preimplantation diagnostics. Our findings suggest that about 90% embryos retained the ability to develop at least to the blastula stage after this manipulation.


Asunto(s)
Rayos Láser , Microcirugia/métodos , Pinzas Ópticas/efectos adversos , Diagnóstico Preimplantación/métodos , Animales , Biopsia , Embrión de Mamíferos , Femenino , Ratones , Microscopía , Microcirugia/instrumentación , Embarazo , Diagnóstico Preimplantación/instrumentación , Zona Pelúcida/ultraestructura
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