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	<title>why dye lasers are also called tunable lasers | Winner Science</title>
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		<title>Dye laser and its construction</title>
		<link>https://winnerscience.com/dye-laser-and-its-construction/</link>
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		<dc:creator><![CDATA[amsh]]></dc:creator>
		<pubDate>Tue, 17 May 2011 15:14:38 +0000</pubDate>
				<category><![CDATA[LASER]]></category>
		<category><![CDATA[active medium in dye lasers]]></category>
		<category><![CDATA[concentartion of dye solution in dye lasers]]></category>
		<category><![CDATA[construction of dye lasers]]></category>
		<category><![CDATA[dye lasers]]></category>
		<category><![CDATA[example dye lasers]]></category>
		<category><![CDATA[how much tuning is obtained indye lasers]]></category>
		<category><![CDATA[how pumping is done in dye lasers]]></category>
		<category><![CDATA[optical resonator system in dye lasers]]></category>
		<category><![CDATA[pumping source in dye lasers]]></category>
		<category><![CDATA[tunable laser definition]]></category>
		<category><![CDATA[which dye is used in dye lasers]]></category>
		<category><![CDATA[who discovered dye lasers]]></category>
		<category><![CDATA[why dye lasers are also called tunable lasers]]></category>
		<guid isPermaLink="false">https://winnerscience.com/?p=1901</guid>

					<description><![CDATA[<p>Dye lasers use liquid organic dyes. These organic dyes are dissolved in solvents like water, ethyl&#160; alcohol, methanol. The most widely used dye is rhodamine-6G, also known as Xanthene dye. These lasers are discovered by Sorokin and his colleagues. Dye lasers operate without the intervening metastable state. CONSTRUCTION The dye</p>
<p>The post <a href="https://winnerscience.com/dye-laser-and-its-construction/">Dye laser and its construction</a> first appeared on <a href="https://winnerscience.com">Winner Science</a>.</p>]]></description>
										<content:encoded><![CDATA[<p>Dye lasers use liquid organic dyes. These organic dyes are dissolved in solvents like water, ethyl&nbsp; alcohol, methanol. The most widely used dye is rhodamine-6G, also known as Xanthene dye. These lasers are discovered by Sorokin and his colleagues. Dye lasers operate without the intervening metastable state.</p>



<p><strong>CONSTRUCTION</strong></p>



<p>The dye laser consisted of a 1cm long quartz glass tube filled with solutions of organic&nbsp; dyes such as rhodamine- 6G.<br><strong><a href="https://winnerscience.com/science/physics/laser-physics/active-medium-of-laser/" title="Active Medium">Active Medium</a>.</strong> Rhodamine-6G dissolved in a suitable liquid like water, ethyl alcohol or methanol is used as the active medium. The dye solution used in the dye lasers typically has a concentration in the range of 10<sup>-2</sup> to 10<sup>-4</sup> M. Rhodamine-6G emits in yellow-red region.</p>


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<p><strong><a title="Pumping source" href="https://winnerscience.com/science/physics/laser-physics/pumping-source/">Pumping source</a>: </strong> Energy to excite the dye is supplied by a strong light source that may be a flash lamp or another laser like N<sub>2</sub> laser or argon-ion laser. Thus, optical pumping is used to excite the dye and to achieve population inversion.</p>



<p><strong><a title="Optical resonator System" href="https://winnerscience.com/science/physics/laser-physics/optical-resonator-system-in-laser/">Optical resonator System</a></strong>. The most useful feature of dye lasers is their tunability.&nbsp; The tunability means that the lasing wavelength for a dye may be varied over a wide range.&nbsp; Due&nbsp; to this&nbsp;&nbsp; reason, dye lasers are also called <strong>tunable lasers</strong>. Tuning over 500 angstrom has been obtained.</p>



<p>One of the techniques to obtain tuning is to replace one of the mirrors&nbsp; of the resonant cavity with a diffraction&nbsp; grating. Thus a dye cell is usually placed inside a cavity consisting of a partially&nbsp; reflective&nbsp; mirror&nbsp; on the&nbsp; front and a diffraction grating on the rear. A source light is focused onto the&nbsp; dye to excite it and stimulate laser action.</p>



<p>By rotating the diffraction grating , wavelength of laser output can be altered. Thus tuning is obtained. Therefore, this combination of partially reflective mirror and diffraction grating will act as optical resonator system. For radiation to be reflected back along the&nbsp; laser cavity axis, the angle θ that the normal to the diffraction grating makes with the cavity must satisfy the condition.</p>



<p>2dsinθ =nλ &nbsp;(n = 1, 2, 3, &#8230;)</p>



<p>Where&nbsp; d is grating spacing</p>



<p>Λ is wavelength of radiation.</p>



<p>By rotating the grating, angle θ will be changed and thus the output wavelength will be changed that is tuning of output wavelength will be achieved.</p>


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<p><strong>Kindly Read This Also : </strong></p>



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