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DTSTART:20170312T030000
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DTSTART:20171105T010000
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BEGIN:VEVENT
DTSTAMP:20180121T172628Z
UID:2F6CE93A-A243-4BD3-B470-830AE5F40B96
DTSTART;TZID=Canada/Eastern:20170720T100000
DTEND;TZID=Canada/Eastern:20170720T110000
DESCRIPTION:On chip optical microresonators [1\, 2] are compact\, robust an
 d can be integrated with micro electro-mechanical components as well as mi
 crofluidics. They can efficiently sense acceleration [3]\, forces [4]\, ga
 ses [5]\, refractive index of liquids [6] and living cells [7\, 8]\, and b
 acteria [9]. During the presentation I will give an overview of projects e
 xploiting this new avenue (sensors and tunable devices based on different 
 types of optical microresonators). In-plane Fabry-Pérot microcavities int
 egrated on chip will be specifically highlighted through several different
  applications.\n\n[1] R. St-Gelais\, A. Poulin\, and Y.-A. Peter\, IEEE/OS
 A Journal of Lightwave Technology 30\, 1900 (2012)\n\n[2] S. Bergeron\, S.
  Saïdi\, and Y.-A. Peter\, Optics Express 18\, 16797 (2010).\n\n[3] K. Za
 ndi\, J.A. Bélanger\, and Y.-A. Peter\, IEEE Journal of Microelectromecha
 nical Systems 21\, 1464 (2012)\n\n[4] A. Poulin\, R. St-Gelais\, A. L. Eic
 henberger\, L. Thévenaz\, and Y.-A. Peter\, IEEE Journal of Microelectrom
 echanical Systems 22\, 884 (2013)\n\n[5] R. St-Gelais\, G. Mackey\, J. Sau
 nders\, J. Zhou\, A. Leblanc-Hotte\, A. Poulin\, J. A. Barnes\, H.-P. Looc
 k\, R. S. Brown\, and Y.-A. Peter\, Sensors &amp; Actuators B: Chemical 182\, 
 45 (2013)\n\n[6] R. St-Gelais\, J. Masson\, and Y.-A. Peter\, Applied Phys
 ics Letters 94\, 243905 (2009)\n\n[7] A. Leblanc-Hotte\, J.-S. Delisle\, S
 . Lesage\, and Y.-A. Peter\, Solid-State Sensors\, Actuators and Microsyst
 ems Workshop\, Hilton Head\, 327 (2014)\n\n[8] A. Leblanc-Hotte\, J.-S. De
 lisle\, S. Lesage\, and Y.-A. Peter\, IEEE International Conference on Opt
 ical MEMS and Nanophotonics\, Singapore\, 167 (2016)\n\n[9] H. Ghali\, H. 
 Chibli\, P. Bianucci\, J. L. Nadeau\, and Y.-A. Peter\, Biosensors 6\, 20 
 (2016)\n\nSpeaker(s): Yves-Alain Peter\, \n\nQuebec City\, Quebec\, Canada
LOCATION:Quebec City\, Quebec\, Canada
ORGANIZER:amine.miled@gmail.com
SEQUENCE:0
SUMMARY:[Legacy Report] Resonant optical lab-on-a-chip
URL;VALUE=URI:https://events.vtools.ieee.org/m/158757
X-ALT-DESC:Description: &lt;br /&gt;&lt;p&gt;On chip optical microresonators [1\, 2] ar
 e compact\, robust and can be integrated with micro electro-mechanical com
 ponents as well as microfluidics. They can efficiently sense acceleration 
 [3]\, forces [4]\, gases [5]\, refractive index of liquids [6] and living 
 cells [7\, 8]\, and bacteria [9]. During the presentation I will give an o
 verview of projects exploiting this new avenue (sensors and tunable device
 s based on different types of optical microresonators). In-plane Fabry-P&amp;e
 acute\;rot microcavities integrated on chip will be specifically highlight
 ed through several different applications.&lt;/p&gt;\n&lt;p&gt;[1]&amp;nbsp\;&amp;nbsp\;&amp;nbsp\
 ;&amp;nbsp\;&amp;nbsp\;&amp;nbsp\; R. St-Gelais\, A. Poulin\, and Y.-A. Peter\, IEEE/O
 SA Journal of Lightwave Technology 30\, 1900 (2012)&lt;/p&gt;\n&lt;p&gt;[2]&amp;nbsp\;&amp;nbs
 p\;&amp;nbsp\;&amp;nbsp\;&amp;nbsp\;&amp;nbsp\; S. Bergeron\, S. Sa&amp;iuml\;di\, and Y.-A. P
 eter\, Optics Express 18\, 16797 (2010).&lt;/p&gt;\n&lt;p&gt;[3]&amp;nbsp\;&amp;nbsp\;&amp;nbsp\;&amp;
 nbsp\;&amp;nbsp\;&amp;nbsp\; K. Zandi\, J.A. B&amp;eacute\;langer\, and Y.-A. Peter\, 
 IEEE Journal of Microelectromechanical Systems 21\, 1464 (2012)&lt;/p&gt;\n&lt;p&gt;[4
 ]&amp;nbsp\;&amp;nbsp\;&amp;nbsp\;&amp;nbsp\;&amp;nbsp\;&amp;nbsp\; A. Poulin\, R. St-Gelais\, A. 
 L. Eichenberger\, L. Th&amp;eacute\;venaz\, and Y.-A. Peter\, IEEE Journal of 
 Microelectromechanical Systems 22\, 884 (2013)&lt;/p&gt;\n&lt;p&gt;[5]&amp;nbsp\;&amp;nbsp\;&amp;n
 bsp\;&amp;nbsp\;&amp;nbsp\;&amp;nbsp\; R. St-Gelais\, G. Mackey\, J. Saunders\, J. Zho
 u\, A. Leblanc-Hotte\, A. Poulin\, J. A. Barnes\, H.-P. Loock\, R. S. Brow
 n\, and Y.-A. Peter\, Sensors &amp;amp\; Actuators B: Chemical 182\, 45 (2013)
 &lt;/p&gt;\n&lt;p&gt;[6]&amp;nbsp\;&amp;nbsp\;&amp;nbsp\;&amp;nbsp\;&amp;nbsp\;&amp;nbsp\; R. St-Gelais\, J. M
 asson\, and Y.-A. Peter\, Applied Physics Letters 94\, 243905 (2009)&lt;/p&gt;\n
 &lt;p&gt;[7]&amp;nbsp\;&amp;nbsp\;&amp;nbsp\;&amp;nbsp\;&amp;nbsp\;&amp;nbsp\; A. Leblanc-Hotte\, J.-S. 
 Delisle\, S. Lesage\, and Y.-A. Peter\, Solid-State Sensors\, Actuators an
 d Microsystems Workshop\, Hilton Head\, 327 (2014)&lt;/p&gt;\n&lt;p&gt;[8] A. Leblanc-
 Hotte\, J.-S. Delisle\, S. Lesage\, and Y.-A. Peter\, IEEE International C
 onference on Optical MEMS and Nanophotonics\, Singapore\, 167 (2016)&lt;/p&gt;\n
 &lt;p&gt;[9]&amp;nbsp\;&amp;nbsp\;&amp;nbsp\;&amp;nbsp\;&amp;nbsp\;&amp;nbsp\; H. Ghali\, H. Chibli\, P.
  Bianucci\, J. L. Nadeau\, and Y.-A. Peter\, Biosensors 6\, 20 (2016)&lt;/p&gt;\
 n&lt;h2&gt;&lt;strong&gt;&amp;nbsp\;&lt;/strong&gt;&lt;/h2&gt;
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