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		<title>Post doc position in Nanocrystal based infrared optoelectronics</title>
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		<dc:date>2016-11-03T06:46:54Z</dc:date>
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		<dc:creator>Francis Cassagne</dc:creator>



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&lt;p&gt;Nanocrystal based infrared optoelectronics &lt;br class='autobr' /&gt;
The goal of this post doc is the development of photodetectors operating in the mid and far infrared. The project aims to design and characterize photodetectors based on narrow band gap nanocrystals as active material. The candidate will be in charge to develop a photovoltaic (PV) detector based on vertical and nanotrench geometries. Compared to &#8220;conventional&#8221; PV device for solar cell, the challenge comes from the fact that the device has to be (&#8230;)&lt;/p&gt;


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&lt;a href="https://w54.net.espci.fr/spip.php?rubrique200" rel="directory"&gt;Post doc&lt;/a&gt;


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		<title>PhD position opening</title>
		<link>https://w54.net.espci.fr/spip.php?article662</link>
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		<dc:date>2018-02-15T05:57:33Z</dc:date>
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		<dc:creator>Francis Cassagne</dc:creator>


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&lt;p&gt;ESPCI Paris, PSL Research University (Universit&#233; de Recherche Paris-Sciences-et-Lettres) Ecole Doctorale Physique et chimie des Mat&#233;riaux (ED 397) &#171; Physics of Degradation in Organic, Nanocrystal, and Hybrid solar cells &#187; &lt;br class='autobr' /&gt;
Project description : Researchers in the field of photovoltaic devices based on organic, inorganic colloidal quantum dots (QDs) and organic-inorganic perovskite halide materials have witnessed remarkable progress over the past decade. The majority of research efforts have (&#8230;)&lt;/p&gt;


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&lt;a href="https://w54.net.espci.fr/spip.php?rubrique214" rel="directory"&gt;2018&lt;/a&gt;

/ 
&lt;a href="https://w54.net.espci.fr/spip.php?mot550" rel="tag"&gt;Col-droite-postes&lt;/a&gt;

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		<title>Postdoctoral position : High-frequency parametric amplification with High-Tc Josephson junctions</title>
		<link>https://w54.net.espci.fr/spip.php?article781</link>
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		<dc:date>2022-06-08T13:09:39Z</dc:date>
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		<dc:language>fr</dc:language>
		<dc:creator>Francis Cassagne</dc:creator>


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&lt;p&gt;Parametric amplifiers exploit a non-linear response of a medium to transfer the power of a high-amplitude pump tone to the signal to be amplified. The physical properties of the non-linear medium are parametrically modulated by the pump, which serves as the energy source for the amplification. In the microwave domain, parametric amplification can be realized with one or a set of superconducting Josephson junctions whose non-linearity allows the mixing of the waves [1]. The junctions can (&#8230;)&lt;/p&gt;


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&lt;a href="https://w54.net.espci.fr/spip.php?rubrique232" rel="directory"&gt;2022&lt;/a&gt;

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&lt;a href="https://w54.net.espci.fr/spip.php?mot550" rel="tag"&gt;Col-droite-postes&lt;/a&gt;

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		<title>PhD position opening 2022</title>
		<link>https://w54.net.espci.fr/spip.php?article782</link>
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		<dc:date>2022-06-09T08:06:44Z</dc:date>
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		<dc:language>fr</dc:language>
		<dc:creator>Francis Cassagne</dc:creator>


		<dc:subject>Col-droite-postes</dc:subject>

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&lt;p&gt;LABORATOIRE DE PHYSIQUE ET D'ETUDE DES MAT&#201;RIAUX &#8212; UMR8213
&lt;br class='autobr' /&gt;
Superionic conductors for sustainable energy applications &lt;br class='autobr' /&gt;
Contact : Dr. Brigitte Leridon, PhD, HDR
&lt;br class='autobr' /&gt;
Pr St&#233;phane Hol&#233;,&lt;/p&gt;


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&lt;a href="https://w54.net.espci.fr/spip.php?rubrique232" rel="directory"&gt;2022&lt;/a&gt;

/ 
&lt;a href="https://w54.net.espci.fr/spip.php?mot550" rel="tag"&gt;Col-droite-postes&lt;/a&gt;

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