[16] Kaczvinszki, Markus, Nicolas Bachelard, Jakob Hüpfl, Michael Horodynski, Matthias Kühmayer and Stefan Rotter "Optimal Cooling of Multiple Levitated Particles through Far-Field Wavefront-Shaping." arXiv:2103.12592 (2021). → Link.
[15] Bachelard, Nicolas, Julien Arlandis, Carlos Garay, Rachid Touzani and Patrick Sebbah. ”Exceptional point between Anderson-localized modes in random media.”, arXiv:1407.8220. → Link.
[14] Bachelard, Nicolas, Chad Ropp, Sui Yang and Xiang Zhang, "Externally-driven broadband transmission in strongly disordered materials.", Accepted for publication in Applied Physics Letters.
[13] Schönhuber, Sebastian, Nicolas Bachelard, Benedikt Limbacher, Martin Kainz, Aaron Andrews, Hermann Detz, Gottfried Strasser, Juraj Darmo, Stefan Rotter and Karl Unterrainer. ”All-Optical Adaptive Control of Quantum Cascade Random Lasers.”, Nature Communications 11(1), 1-8 (2020). → Link.
[12] Ropp†, Chad, Nicolas Bachelard†, David Bart, Yuan Wang, and Xiang Zhang. ”Dissipative self-organization in optical space”, Nature Photonics 12 (12), 739-743 (2018). → Link. (†: co-first)
[11] Bachelard, Nicolas, Chad Ropp, Marc Dubois, Rongkuo Zhao, Yuan Wang, and Xiang Zhang. ”Emergence of an enslaved phononic bandgap in a non-equilibrium pseudo-crystal” Nature Materials 16 (8), 808-813 (2017). → Link. (Communication: K. Bishop, “Living bandgaps”, News and Views Nature Materials (2017). )
[10] Mrejen, Michael, Haim Suchowski, Nicolas Bachelard, Yuan Wang, and Xiang Zhang. ”Low-loss and Energy Efficient Modulation in Silicon Photonic Waveguides by Adiabatic Elimination Scheme”, Applied Physics Letters 111 (3), 033105 (2017). → Link.
[9] Gaikwad, Preety, Nicolas Bachelard, Patrick Sebbah, Rénal Backov and Renaud Vallé. ”Competition and Coexistence of Raman and Random Lasing in Silica‐/Titania‐Based Solid Foams”, Advanced Optical Materials 3 (11), 1640-1651 (2015). → Link.
[8] Bachelard, Nicolas, Rémi Carminati, Patrick Sebbah, and Christian Vanneste. ”Linear and nonlinear Rabi oscillations of a two-level system resonantly coupled to an Anderson-localized mode”, Physical Review A 91 (4), 043810 (2015). → Link.
[7] Bachelard, Nicolas. ”Control of passive and active open random media: Theoretical and Experimental investigations”, Ph.D. thesis (2014). → Link.
[6] Bachelard, Nicolas, Sylvain Gigan, Xavier Noblin, and Patrick Sebbah. ”Adaptive pumping for spectral control of random lasers.” Nature Physics 10, 426–431 (2014). → Link. (Communication: Rotter, S. ”Random lasers: Playing pinball with light.” News and Views Nature Physics (2014).)
[5] Bachelard, Nicolas, Preety Gaikwad, Rénal Backov, Patrick Sebbah, and Renaud Vallée. ”Disorder as a Playground for the Coexistence of Optical Nonlinear Effects: Competition between Random Lasing and Stimulated Raman Scattering in Complex Porous Materials”, APS Photonics 1 (11), 1206-1211 (2014). → Link.
[4] Andreasen, Jonathan, Nicolas Bachelard, Shivakiran BN Bhaktha, Hui Cao, Patrick Sebbah, and Christian Vanneste. ”Partially Pumped Random Lasers.” International Journal of Modern Physics B 28 (05), 1430001 (2013). → Link.
[3] Bhaktha, Shivakiran, Nicolas Bachelard, Xavier Noblin, and Patrick Sebbah. ”Optofluidic random laser.” Applied Physics Letters 101 (15) 151101 (2012). → Link. (Communication: Won, Rachel. ”Optofluidic lasers: In random form.” News and Views Nature Photonics (2013).)
[2] Bachelard, Nicolas, Jonathan Andreasen, Sylvain Gigan, and Patrick Sebbah. ”Taming random lasers through active spatial control of the pump.” Physical Review Letters 109 (3), 033903 (2012). → Link. (Communication: F. Smith, “How to Control a Random Laser”, PRL Focus of Physics (2012).)
[1] Bachelard, Nicolas, Frédéric Guichard, Frédéric Cao, and Imène Tarchouna. ”Performance of extended depth of field systems and theoretical diffraction limit.” Digital Photography VII 7876, 787607 (2011). → Link.