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						<h1 itemprop="headline">Ole Rømer Colloquium - Eleftherios Goulielmakis: &quot;Exploring the attosecond frontier of matter&quot;</h1>
						
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														Onsdag 20. september 2017,
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									<h2>Ole Rømer Colloquium</h2>
<p>&nbsp;</p>
<p><strong>Title:</strong> 
</p>
<p>Exploring the attosecond frontier of matter<strong> </strong>
</p>
<p>&nbsp;</p>
<p><strong>Speaker:</strong> 
</p>
<p>Eleftherios Goulielmakis,&nbsp; Max-Planck-Institut für Quantenoptik 
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<p>&nbsp;</p>
<p><strong>Abstract:</strong> 
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<p>Having the shortest optical<sup>1,2,3</sup> and soft x-ray fields<sup>4</sup> as a part of its repertoire, attosecond physics has recently opened up new avenues for exploring ultrafast electronic processes in atoms<sup>5,6</sup>, &nbsp;molecules<sup>7</sup>, surfaces<sup>8</sup> and nanostructures<sup>9</sup>. I will discuss how modern advancements of the “ultrafast toolbox” allow for the first time, the exploration and control of fundamental electronic phenomena in the nanoscale.&nbsp; Electron motion in bulk media, driven by intense, precisely-sculpted, optical fields give rise to controllable electric currents, the frequency of which extends to the multi-Petahertz range<sup>9-10</sup>, advancing lightwave electronics<sup>10</sup> to new realms of speed and precision. &nbsp;Coherent extreme ultraviolet radiation emerging by these coherent charge oscillations<sup>9</sup> offers direct insight into structural and dynamical properties of the underlying medium which were previously inaccessible to conventional solid-state spectroscopies. By endowing essential x-ray spectroscopies of solids with attosecond temporal resolution, optical half-cycle fields, combined with extreme ultraviolet pulses, offer for the first time, access into the attosecond dephasing of electronic excitation of highly-correlated condensed phase electronic systems<sup>11</sup>. We anticipate these new capabilities to result in far reaching implications to fundamental and applied, electronic and photonic sciences. 
</p>
<p>[1] Goulielmakis &nbsp;E. et al., Science 305, 1267 (2004) [2] Wirth &nbsp;A. et al., Science 334, 195 (2011). [3] Hassan M. Th &nbsp;et al., Nature &nbsp;530,66 ( 2016) [4] Goulielmakis &nbsp;E.et al., Science 320, 1614 (2008).[5] Goulielmakis &nbsp;E. et al., Nature 466, 739 (2010). [6] Kienberger R. et al., Nature 427<a name="_Ref295816745">, 817 (2004) [6], Smirnova et. al, Nature 460,972(2009) [7] Cavalieri A L et al., Nature 449,1029 (2007) [8] Krueger M et al. Nature 475,78 (2011) [9] Luu T.T. et al.,</a> Nature 521,498&nbsp; (2015), Garg &nbsp;et .al., Nature&nbsp; 538, 359 in print (2016), [10] Goulielmakis E. et al., Science 317, 769 (2007). [11] Moulet A. et al., Science in print (2017)
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<p><em>Coffee and cake will be available from 3.05pm</em></p>
								
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