自从2006年起,蔡林格担任奥地利科技學院董事会副主席,这是一个由蔡林格提议发起的雄心勃勃的项目。 2009年,他创立了国际学院 Traunkirchen ( International Academy Traunkirchen)[15], 致力于支持科学技术方面的天才学生。 他是道格拉斯·亚当斯的《银河系漫游指南》的粉丝,甚至将他的帆船命名为42[16]。
安东·蔡林格与他的团队一起,为实现新的纠缠态做出了许多贡献。 当 Paul Kwiat(英语:Paul Kwiat) 在蔡林格小组担任博士后[27]时,他与 Paul Kwiat 一起开发了偏振纠缠光子对的来源,成为全球许多实验室的主力军。 光子轨道角动量纠缠的首次展示为许多实验室开辟了一个新兴的研究领域[28]。
^D. Bouwmeester, J. W. Pan, K. Mattle, M. Eibl, H. Weinfurter & A. Zeilinger, Experimental Quantum Teleportation, Nature 390, 575–579 (1997). Abstract互联网档案馆的存檔,存档日期2009-10-29.. Selected for the Nature “Looking Back” category of classic papers from Nature’s archive; one of ISI’s “Highly Cited Papers”.
^J.-W. Pan, S. Gasparoni, M. Aspelmeyer, T. Jennewein & A. Zeilinger, Experimental Realization of Freely Propagating Teleported Qubits, Nature 421, 721–725 (2003). Abstract互联网档案馆的存檔,存档日期2013-11-15..Selected by the International Institute of Physics as one of the top ten Physics Highlights in 2003.
^X.-S. Ma, T. Herbst, T. Scheidl, D. Wang, S. Kropatschek, W. Naylor, B. Wittmann, A. Mech, J. Kofler, E. Anisimova, V. Makarov, T. Jennewein, R. Ursin & A. Zeilinger, Quantum teleportation over 143 kilometres using active feed-forward, Nature 489, 269–273 (2012). Abstract互联网档案馆的存檔,存档日期2022-10-04.. Ranked as a “highly cited paper” by Thomson Reuters’ Web of Science, placing it in the 1% of the academic field of physics based on a highly cited threshold for the field and publication year.
^T. Jennewein, C. Simon, G. Weihs, H. Weinfurter & A. Zeilinger, Quantum Cryptography with Entangled Photons, Phys. Rev. Lett. 84, 4729–4732 (2000). Abstract. This paper was featured in several popular science magazines, both online and in print.
^P. Walther, K.J. Resch, T. Rudolph, E. Schenck, H. Weinfurter, V. Vedral, M. Aspelmeyer & A. Zeilinger, Experimental one-way quantum computing, Nature 434 (7030), 169–176 (2005). Abstract互联网档案馆的存檔,存档日期2022-10-04..
^E. Knill, R. Laflamme & G. J. Milburn, A scheme for efficient quantum computation with linear optics, Nature 409, 46–52 (2001). Abstract互联网档案馆的存檔,存档日期2013-11-14..
^P.G. Kwiat, K. Mattle, H. Weinfurter, A. Zeilinger, A.V. Sergienko & Y.H. Shih, New High-Intensity Source of Polarization-Entangled Photon Pairs, Phys. Rev. Lett. 75 (24), 4337–41 (1995). Abstract.
^A. Mair, A. Vaziri, G. Weihs & A. Zeilinger, Entanglement of the orbital angular momentum states of photons, Nature 412 (6844), 313–316 (2001). Abstract互联网档案馆的存檔,存档日期3 May 2010..
^M. Arndt, O. Nairz, J. Voss-Andreae, C. Keller, G. van der Zouw & A. Zeilinger, Wave-particle duality of C60 molecules, Nature 401, 680–682 (1999). Abstract互联网档案馆的存檔,存档日期21 September 2012.. Selected by the American Physical Society as a physics highlight of 1999.
^S. Gigan, H. R. Böhm, M. Paternostro, F. Blaser, G. Langer, J. B. Hertzberg, K. Schwab, D. Bäuerle, M. Aspelmeyer & A. Zeilinger, Self-cooling of a micro-mirror by radiation pressure, Nature 444, 67–70 (2006). Abstract互联网档案馆的存檔,存档日期1 August 2013..
^R. Fickler, R. Lapkiewicz, W. N. Plick, M. Krenn, C. Schäff, S. Ramelow & A. Zeilinger, Quantum entanglement of high angular momenta, Science 338, 640–643 (2012). Abstract互联网档案馆的存檔,存档日期29 December 2021.. Selected as one of the top 10 breakthroughs of the year 2012 by IOP'sPhysics World. Also featured in DPG'sPhysik Journal. Ranked as a "highly cited paper" by Thomson Reuters' Web of Science, placing it in the 1% of the academic field of physics based on a highly cited threshold for the field and publication year.
^Anton Zeilinger. Wolf Foundation. 2018-12-11 [2022-10-05]. (原始内容存档于2020-01-12) (美国英语).