Publications

2026
Self-Induced Superradiant Masing
Wenzel Kersten, Nikolaus de Zordo, Elena S. Redchenko, Nikolaos Lagos, Andrew N. Kanagin, Andreas Angerer, William J. Munro, Kae Nemoto, Igor E. Mazets, Jörg Schmiedmayer
Nature Physics,Published: 02 January 2026
arXiv:2410.10543

2025
Impurities in cryogenic solids: a new platform for hybrid quantum systems
Andrew N. Kanagin, Nikolaus de Zordo, Andreas Angerer, Wenzel Kersten, Nikolaos Lagos, Joerg Schmiedmayer, Elena S. Redchenko
arXiv:2508.21651

Observation of collapse and revival in a superconducting atomic frequency comb
E.S. Redchenko, M. Zens, M. Zemlicka, M. Peruzzo, F. Hassani, H.S. Dhar, D.O. Krimer, S. Rotter, J.M.
Phys. Rev. Lett. 134 ·Published 11 February, 2025
arXiv:2310.04200

2024
Hydrogen crystals reduce dissipation in superconducting resonators
Francesco Valenti, Andrew N. Kanagin, Andreas Angerer, Luiza Buimaga-Iarinca, Cristian Morari, Jörg Schmiedmayer, Ioan M. Pop
Phys. Rev. B 109, 054503 – Published 6 February 2024
arXiv:2306.04112

2023
Triggered Superradiance and Inversion Storage in a Hybrid Quantum System
Wenzel Kersten, Nikolaus de Zordo, Oliver Diekmann, Tobias Reiter, Matthias Zens, Andrew N. Kanagin, Stefan Rotter, Jörg Schmiedmayer, Andreas Angerer
Phys. Rev. Lett. 131, 043601 – Published 25 July 2023
arXiv:2301.04100

2021
Dispersive readout of room-temperature spin qubits
Jasper Ebel, Timo Joas, Martin Schalk, Paul Weinbrenner, Andreas Angerer, Johannes Majer and Friedemann Reinhard
Published 15 June 2021 • © 2021 The Author(s). Published by IOP Publishing Ltd Quantum Science and Technology, Volume 6, Number 3
arXiv:2003.07562

2018
Superradiant emission from colour centres in diamond
Andreas Angerer, Kirill Streltsov, Thomas Astner, Stefan Putz, Hitoshi Sumiya, Shinobu Onoda, Junichi Isoya, William J. Munro, Kae Nemoto, Jörg Schmiedmayer & Johannes Majer
Nature Physics 14, 1168 (2018)
arXiv:1802.07100

Ab initio calculation of the spin lattice relaxation time T 1 for nitrogen-vacancy centers in diamond
Johannes Gugler, Thomas Astner, Andreas Angerer, Jörg Schmiedmayer, Johannes Majer, Peter Mohn
Phys. Rev. B 98, 214442 – Published 26 December 2018
arXiv:1801.09529

Solid-state electron spin lifetime limited by phononic vacuum modes
T.Astner, J.Gugler, A.Angerer, S.Wald, S.Putz, N.J.Mauser, M.Trupke, H.Sumiya, S.Onoda, J.Isoya, J.Schmiedmayer, P.Mohn, J.Majer
Nature Materials (2018) doi:10.1038/s41563-017-0008-y
arXiv:1706.09798

2017
Ultralong relaxation times in bistable hybrid quantum systems
A. Angerer, St. Putz, D.O. Krimer, Th. Astner, M. Zens, R. Glattauer, K. Streltsov, W.J. Munro, K. Nemoto, St. Rotter, J. Schmiedmayer and J. Majer
Sci.Adv.2017;3:e1701626

A universal quantum module for quantum communication, computation, and metrology
Michael Hanks, Nicolò Lo Piparo, Michael Trupke, Jörg Schmiedmayer, William J. Munro, Kae Nemoto
Proc. SPIE 10358, Quantum Photonic Devices, 103580K (2017)

High-Fidelity Spin Measurement on the Nitrogen-Vacancy Center
Michael Hanks, Michael Trupke, Joerg Schmiedmayer, William J. Munro, Kae Nemoto
New J. Phys. 19(2017)103002
arXiv:1705.00156

Large-scale quantum technology based on luminescent centers in crystals
M. Trupke, C. Salter, S. Reisenbauer, R. Vasconcelos, G. Wachter, K. Buczak, A. Angerer, J. Schmiedmayer, F. Aumayr, U. Schmid, P. Walther, W. J. Munro, K. Nemoto.
Electron Devices Meeting (IEDM), 2016 IEEE International

Coherent Coupling of Remote Spin Ensembles via a Cavity Bus
Thomas Astner, S. Nevlacsil, N. Peterschofsky, A. Angerer, S. Rotter, S. Putz, J. Schmiedmayer, Johannes Majer
Phys. Rev. Lett. 118, 140502
arXiv:1610.07890

Spectral hole burning and its application in microwave photonics
Stefan Putz, A. Angerer, D.O. Krimer, R. Glattauer, W.J. Munro, S. Rotter, J. Schmiedmayer, Johannes Majer
Nature Photonics, 11 (2017), S. 36 – 39
arXiv:1512.00248

2016
Photonic Quantum Networks formed from NV− centers
Kae Nemoto, Michael Trupke, Simon J. Devitt, Burkhard Scharfenberger, Kathrin Buczak, Jörg Schmiedmayer & William J. Munro
Scientific Reports, 6 (2016), S. 1 – 12
arXiv: 1412.5950

Sustained photon pulse revivals from inhomogeneously broadened spin ensembles
Dmitry O.Krimer, Matthias Zenz, Stefan Putz, Stefan Rotter
Laser & Photonics Reviews, 10 (2016), S. 1023 – 1030; arXiv:1701.01852

Electrical transport properties of single-crystal Al nanowires
Florian M Brunbauer, Emmerich Bertagnolli, Johannes Majer and Alois Lugstein
Nanotechnology, 27 (2016), S. 1 – 6; arXiv:1605.05554

A scalable architecture for quantum computation with molecular nanomagnets
M. D. Jenkins, D. Zueco, O. Roubeau, G. Aromi, J. Majer, F. Luis
Dalton Transactions Volume 45, Pages 16535–17054; arXiv:1610.06091

Collective strong coupling with homogeneous Rabi frequencies using a 3D lumped element microwave resonator
Andreas Angerer, Thomas Astner, Daniel Wirtitsch, Hitoshi Sumiya, Shinobu Onoda, Junichi Isoya, Stefan Putz and Johannes Majer
Appl. Phys. Lett. 109, 033508 (2016); arXiv:1605.05554

All-optical dc nanotesla magnetometry using silicon vacancy fine structure in isotopically purified silicon carbide
D. Simin, V. A. Soltamov, A. V. Poshakinskiy, A. N. Anisimov, R. A. Babunts, D. O. Tolmachev, E. N. Mokhov, M. Trupke, S. A. Tarasenko, A. Sperlich, P. G. Baranov, V. Dyakonov, G. V. Astakhov
Phys. Rev. X 6, 031014; arXiv:1511.04663 or arXiv:1511.04663v1

2015
Subnanotesla quantum-interference magnetometry with a single spin in diamond
A. Angerer, T. Nöbauer, G. Wachter, M. Markham, A. Stacey, J. Majer, J. Schmiedmayer, M. Trupke
arXiv:1509.01637 or arXiv:1509.01637v1;

Smooth optimal quantum control for robust solid state spin magnetometry
Tobias Nöbauer, Andreas Angerer, Björn Bartels, Michael Trupke, Stefan Rotter, Jörg Schmiedmayer, Florian Mintert, Johannes Majer
Phys. Rev. Lett. 115, 190801; arXiv: 1412.5051

2014
Memory-based quantum repeaters with NV centers
Kae Nemoto, S.J. Devitt, M. Trupke, A.M. Stephens, M.S. Everitt, K. Buczak, T. Noebauer,J.Schmiedmayer, W.J. Munro
2014 Conference on Lasers and Electro-Optics (CLEO) – Laser Science to Photonic Applications, IEEE Conference Publications

Arrays of open, independently tunable microcavities
Christian Derntl, Michael Schneider, Johannes Schalko, Achim Bittner, Jörg Schmiedmayer, Ulrich Schmid, and Michael Trupke
Optics Express, Vol. 22, Issue 18; arXiv:1309.0023

Non-Markovian dynamics of a single-mode cavity strongly coupled to an inhomogeneously broadened spin ensemble
Dmitry O. Krimer, Stefan Putz, Johannes Majer, Stefan Rotter
Phys. Rev. A 90, 043852; arXiv:1410.0728

Room-temperature near-infrared silicon carbide nanocrystalline emitters based on optically aligned spin defects
A. Muzha, F. Fuchs, N. V. Tarakina, D. Simin, M. Trupke, V. A. Soltamov, E. N. Mokhov, P. G. Baranov, V. Dyakonov, A. Krueger, G. V. Astakhov
Appl. Phys. Lett. 105, 243112; arXiv:1409.0756

Implementation of the Dicke lattice model in hybrid quantum system arrays
Liujun Zou, David Marcos, Sebastian Diehl, Stefan Putz, Jörg Schmiedmayer, Johannes Majer, Peter Rabl
Phys. Rev. Lett. 113, 023603; arXiv:1405.3289

Photonic Architecture for Scalable Quantum Information Processing in Diamond
Kae Nemoto, Michael Trupke, S.J. Devitt, A.M. Stephens, B. Scharfenberger, Kathrin Buczak, Tobias Nöbauer, M.S. Everitt, Jörg Schmiedmayer, and W.J. Munro
Phys. Rev. X 4, 031022 ; arXiv:1309.4277

Protecting a spin ensemble against decoherence in the strong-coupling regime of cavity QED
S. Putz, D. O. Krimer, R. Amsüss, A. Valookaran, T. Nöbauer, J. Schmiedmayer, S. Rotter & J. Majer
Nature Physics (2014) doi:10.1038/nphys3050; arXiv:1404.4169

2013
Quantum communication utilizing cavity-based quantum devices
Kae Nemoto, A. Stephens, S. Devitt, M. Everitt, J. Schmiedmayer, M. Trupke, S. Saito, Y. Matsuzaki, A. SaiToh, K. Harrison, W. J. Munro
2013 Conference on Lasers and Electro-Optics Pacific Rim (CLEOPR), IEEE Conference Publications

Quantum device and architecture based on NV centers for quantum networks
Kae Nemoto, Simon J. Devitt, Michael Trupke, Ashley M. Stephens, Mark S. Everitt, K. Buczak, T. Noebauer, Jörg Schmiedmayer, W. J. Munro
CLEO: 2013, IEEE Conference Publications

Magnetic conveyor belt transport of ultracold atoms to a superconducting atomchip
Stefan Minniberger, Fritz Diorico, Stefan Haslinger, Christoph Hufnagel, Christian Novotny, Nils Lippok, Johannes Majer, Stephan Schneider, Jörg Schmiedmayer
Applied Physics B; arXiv:1311.3155

Creation of ensembles of nitrogen-vacancy centers in diamond by neutron and electron irradiation
Tobias Nöbauer, Kathrin Buczak, Andreas Angerer, Stefan Putz, Georg Steinhauser, Johanna Akbarzadeh, Herwig Peterlik, Johannes Majer, Jörg Schmiedmayer, Michael Trupke
arXiv:1309.0453;

2012
Optimizing inhomogeneous spin ensembles for quantum memory
Guy Bensky, David Petrosyan, Johannes Majer, Jörg Schmiedmayer, Gershon Kurizki
Phys. Rev. A 86, 012310 (2012); arXiv:1203.6305

Strong magnetic coupling of an inhomogeneous nitrogen-vacancy ensemble to a cavity
K. Sandner, H. Ritsch, R. Amsüss, Ch. Koller, T. Nöbauer, S. Putz, J. Schmiedmayer, J. Majer
Phys. Rev. A 85, 053806 (2012); arXiv:1112.4767v1

2011
Cavity QED with magnetically coupled collective spin states
R. Amsüss, Ch. Koller, T. Nöbauer, S. Putz, S. Rotter, K. Sandner, S. Schneider, M. Schramböck, G. Steinhauser, H. Ritsch, J. Schmiedmayer, and J. Majer
Phys. Rev. Lett. 107, 060502 (2011); arXiv:1103.1045

Cavity QED with an ultracold ensemble on a chip: prospects for strong magnetic coupling at finite temperatures
K. Henschel, J. Majer, J. Schmiedmayer, and H. Ritsch
Phys. Rev. A 82, 033810 (2010) ; arXiv:1007.0116v2

2009
Quantencomputer Wenn ein Bit gleichzeitig 0 und 1 ist
Johannes Majer
Bulletin SEV/AES, 5 (2009), 9

Reversible state transfer between superconducting qubits and atomic ensembles
D. Petrosyan, G. Bensky, G. Kurizki, I. Mazets, J. Majer, and J. Schmiedmayer
Phys. Rev. A 79, 040304(R) (2009) arxiv:0902.0881v1

Strong magnetic coupling of an ultracold gas to a superconducting waveguide cavity
J. Verdu, H. Zoubi, Ch. Koller, J. Majer, H. Ritsch, J. Schmiedmayer
Phys. Rev. Lett. 103, 043603 (2009) arXiv:0809.2552