Generation of acoustic waves by cw laser radiation at the tip of an optical fiber in water


Cite item

Full Text

Open Access Open Access
Restricted Access Access granted
Restricted Access Subscription Access

Abstract

We investigate the specific features of acoustic signals generated in water under the action of cw laser radiation with a power of 3 W at wavelengths of 0.97, 1.56, and 1.9 μm, emerging from an optical fiber. It is established that when a fiber tip without an absorbing coating is used, quasi-periodic pulse signals are generated according to the thermocavitation mechanism due to the formation and collapse of vapor–gas bubbles of millimeter size. In this case, the maximum energy of a broadband (up to 10 MHz) acoustic signal generated only at wavelengths of 1.56 and 1.9 μm is concentrated in the range of 4–20 kHz. It is shown that when there is no absorbing coating, an increase in the laser-radiation absorption coefficient in water leads to an increase in the frequency of generated acoustic pulses, while the maximum pressure amplitudes in them remain virtually constant. If there is an absorbing coating on the laser-fiber tip, a large number of small vapor–gas bubbles are generated at all laser-radiation wavelengths used. This leads to the appearance of a continuous amplitude-modulated acoustic signal, whose main energy is concentrated in the range of 8–15 kHz. It is shown that in this case, increasing the absorption coefficient of laser radiation in water leads to an increase in the power of an acoustic emission signal. The results can be used to explain the high therapeutic efficiency of moderate-power laser-fiber apparatus.

About the authors

V. I. Yusupov

Il’ichev Pacific Institute of Oceanology, Far East Branch; Institute of the Problems of Laser and Information Technologies

Author for correspondence.
Email: iouss@yandex.ru
Russian Federation, ul. Baltiiskaya 43, Vladivostok, 690041; ul. Pionerskaya 2, Troitsk, Moscow, 142190

A. N. Konovalov

Institute of the Problems of Laser and Information Technologies

Email: iouss@yandex.ru
Russian Federation, ul. Pionerskaya 2, Troitsk, Moscow, 142190

V. A. Ul’yanov

Institute of the Problems of Laser and Information Technologies

Email: iouss@yandex.ru
Russian Federation, ul. Pionerskaya 2, Troitsk, Moscow, 142190

V. N. Bagratashvili

Institute of the Problems of Laser and Information Technologies

Email: iouss@yandex.ru
Russian Federation, ul. Pionerskaya 2, Troitsk, Moscow, 142190

Supplementary files

Supplementary Files
Action
1. JATS XML

Copyright (c) 2016 Pleiades Publishing, Ltd.