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Publications



Task 1.1
[Pascher] "Scanning gate microscopy on a graphene nanoribbon",
Nikola Pascher, Dominik Bischoff, Thomas Ihn, and Klaus Ensslin,
Appl. Phys. Lett. 101, 063101 (2012)
http://dx.doi.org/10.1063/1.4742862


[deGraaf] “A near-field scanning microwave microscope based on a superconducting resonator for low power measurements”,
S. E. de Graaf, A. V. Danilov, A. Adamyan, S. E. Kubatkin,
REVIEW OF SCIENTIFIC INSTRUMENTS 84, 023706 (2013)
http://arxiv.org/abs/1404.0534

[deGraaf] “Galvanically split superconducting microwave resonators for introducing internal voltage bias”,
S. E. Graaf, D. Davidovikj, A. Adamyan, S. E. Kubatkin, A. V. Danilov,
APPLIED PHYSICS LETTERS 104, 052601 (2014)

“Coupling of a locally implanted rare-earth ion ensemble to a superconducting micro-resonator”,
I. Wisby, S. E. de Graaf, R. Gwilliam, A. Adamyan, S. Kubatkin, P. J. Meeson, A. Ya. Tzalenchuk, T. Lindström,
Applied Physics Letters 105, 102601 (2014).
http://arxiv.org/abs/1407.5064

“Fiber-based distance sensing interferometry”,
K. Thurner, F. P. Quacquarelli, P. F. Braun, C. Dal Savio, K. Karrai,
Applied Optics 54, 3051-3063 (2015).     

“Kinetic inductance as a microwave circuit design variable by multilayer fabrication”,
A. A. Adamyan, S. E. de Graaf, S. E. Kubatkin, A. V. Danilov,
Superconductor Science and Technology 28, 085007 (2015).


Task 1.2
[deGraaf] "Magnetic field resilient superconducting fractal resonators for coupling to free spins",
S. E. de Graaf, A. V. Danilov, A. Adamyan, T. Bauch, and S. E. Kubatkin,
J. of Appl. Phys. 112, 123905 (2013)


[Leppakangas]
“Effects of quasiparticle tunnelling in a circuit-QED realization of a strongly driven two-level system”,
J. Leppakangas, S. E. de Graaf, A. Adamyan, M. Fogelstrom, A. V. Danilov, T. Lindstrom, S. E. Kubatkin, G. Johansson,
JOURNAL OF PHYSICS B-ATOMIC MOLECULAR AND OPTICAL PHYSICS 46, 224019 (2013)

http://arxiv.org/abs/1306.4200

[deGraaf] “Charge Qubit Coupled to an Intense Microwave Electromagnetic Field in a Superconducting Nb Device: Evidence for Photon-Assisted Quasiparticle Tunneling”,
S. E. de Graaf, J. Leppakangas, A. Adamyan, A. V. Danilov, T. Lindstrom, M. Fogelstrom, T. Bauch, G. Johansson, S. E. Kubatkin,
PHYSICAL REVIEW LETTERS 111, 137002 (2013)


“Microwave Losses in YBCO Coplanar Waveguide Resonators at Low Power and Millikelvin Range”,
M. Arzeo, F. Lombardi, T. Bauch,
IEEE Transactions on Applied Superconductivity 24, 4 (2014).

“Highly homogeneous YBCO/LSMO nanowires for photoresponse experiments”,
R. Arpaia, M. Ejrnaes, L. Parlato, R. Cristiano, M. Arzeo, T. Bauch, S. Nawaz, F. Tafuri, G. P. Pepe, F. Lombardi,
Superconductor Science and Technology 27, 044027 (2014).

“Ultra low noise YBa2Cu3O7-delta nano superconducting quantum interference devices implementing nanowires”,
R. Arpaia, M. Arzeo, S. Nawaz, S. Charpentier, F. Lombardi, T. Bauch,
Applied Physics Letters 104, 072603 (2014).
http://fr.arxiv.org/abs/1401.6990

“Microwave losses in MgO, LaAlO3, and (La0.3Sr0.7)(Al0.65Ta0.35)O3 dielectrics at low power and in the millikelvin temperature range”,
M. Arzeo, F. Lombardi, T. Bauch,
Applied Physics Letters 104, 4 (2014).
http://fr.arxiv.org/abs/1403.2078


Task 2.1
[Sinha] “Strain-induced effects on the magnetic and electronic properties of epitaxial Fe1-xCoxSi thin films”,
P. Sinha, N. A. Porter, C. H. Marrows,
PHYSICAL REVIEW B 89, 134426 (2014)
http://arxiv.org/abs/1307.7301


Task 2.2
[Samaddar] “Niobium-based superconducting nano-device fabrication using all-metal suspended masks”,
S. Samaddar, D. van Zanten, A. Fay, C. B. Winkelmann and H. Courtois,
NANOTECHNOLOGY 24, 375304 (2013)
http://arxiv.org/abs/1304.5381

[Roddaro] “Giant Thermovoltage in Single InAs Nanowire Field-Effect Transistors”,
S. Roddaro, D. Ercolani, M. A. Safeen, S. Suomalainen, F. Rossella, F. Giazotto, L. Sorba, F. Beltram,
NANO LETTERS 13, 3638 (2013)
http://arxiv.org/abs/1312.2835

[Roddaro] “Large thermal biasing of individual gated nanostructures”,
S. Roddaro, D. Ercolani, M. A. Safeen, F. Rossella, V. Piazza, F. Giazotto, L. Sorba, F. Beltram,
NANO RESEARCH 7, 579 (2014)
http://arxiv.org/abs/1312.2845

[Kimouche] “Modulating charge density and inelastic optical response in graphene by atmospheric pressure localized intercalation through wrinkles”,
A. Kimouche, O. Renault, S. Samaddar, C. Winkelmann, H. Courtois, O. Fruchart, J. Coraux,
CARBON 68, 73 (2014)
http://arxiv.org/abs/1311.1357

[Pascher] “Resonant electron tunneling in a tip-controlled potential landscape”,
N. Pascher, F. Timpu, C. Rossler, T. Ihn, K. Ensslin, C. Reichl, W. Wegscheider,
PHYSICAL REVIEW B 89, 245408 (2014)
http://arxiv.org/abs/1401.8207

[Shibata] “Electron magneto-tunneling through single self-assembled InAs quantum dashes”,
K. Shibata, N. Pascher, P. J. J. Luukko, E. Rasanen, S. Schnez, T. Ihn, K. Ensslin, K. Hirakawa,
APPLIED PHYSICS EXPRESS 7, 045001 (2014)

[Pascher] “Imaging the Conductance of Integer and Fractional Quantum Hall Edge States”,
N. Pascher, C. Rossler, T. Ihn, K. Ensslin, C. Reichl, W. Wegscheider,
PHYSICAL REVIEW X 4, 011014 (2014),
http://arxiv.org/abs/1309.4918

“Disorder and screening in decoupled graphene on a metallic substrate”,
S. C. Martin, S. Samaddar, B. Sacépé, A. Kimouche, J. Coraux, F. Fuchs, B. Grévin, H. Courtois, C. B. Winkelmann,
Physical Review B 91, 41406 (2015).
http://fr.arxiv.org/abs/1304.1183

“Large thermal biasing of individual gated nanostructures”,
S. Roddaro, D. Ercolani, M. A. Safeen, F. Rossella, V. Piazza, F. Giazotto, L. Sorba, F. Beltram,
Nano Research 7/4, 579-587 (2014).
http://fr.arxiv.org/abs/1312.2845

“Giant thermovoltage in single InAs-nanowire field-effect transistors”,
S. Roddaro, D. Ercolani, M. A. Safeen, S. Suomalainen, F. Rossella, F. Giazotto, L. Sorba, F. Beltram,
Nano Letters 13, 3638 (2013).
http://fr.arxiv.org/abs/1312.2835

“Pb/InAs nanowire Josephson junction with high critical current and magnetic flux focusing”,
J. Paajaste,  M. Amado, S. Roddaro, F. S. Bergeret, D. Ercolani, L. Sorba, and F. Giazotto,
Nano Letters 15/3, 1803-1808 (2015).
http://fr.arxiv.org/abs/1411.0990



Task 3.2
[Golubev] “Heat transport through a Josephson junction”,
D. Golubev, T. Faivre, J. P. Pekola,
Phys. Rev. B 87, 094522 (2013)
http://arxiv.org/abs/1212.4267

[Feshenko] “Primary Thermometry in the Intermediate Coulomb Blockade Regime”,
A. V. Feshchenko, M. Meschke, D. Gunnarsson, M. Prunnila, L. Roschier, J. S. Penttilä, J. P. Pekola,
J. of Low Temp. Phys. 173, 36 (2013)
joint publication AALTO-AIVON
http://arxiv.org/abs/1206.0548

[Faivre] “Josephson junction based thermometer and its application in bolometry”,
T. Faivre, D. Golubev and J. P. Pekola,
J. Appl. Phys. 116, 094302 (2014)
http://arxiv.org/abs/1405.1570

[Camarasa-Gomez] “Superconducting cascade electron refrigerator”,
M. Camarasa-Gomez, A. Di Marco, F.W.J. Hekking, C. B. Winkelmann, H. Courtois and F. Giazotto,
APPLIED PHYSICS LETTERS 104, 192601 (2014),
joint publication UJF-NEST,
http://arxiv.org/abs/1404.4701

“Fast electron thermometry towards ultra-sensitive calorimetric detection”,
S. Gasparinetti, K. L. Viisanen, O.-P. Saira, T. Faivre, M. Arzeo, M. Meschke, J. P. Pekola,
Physical Review Applied 3, 14007 (2015).
joint publication CTH-AALTO,
http://arxiv.org/abs/1405.7568

“Leakage Current of a Superconductor-Normal Metal Tunnel Junction Connected to a High-Temperature Environment”,
A. Di Marco, V. F. Maisi, J. P. Pekola, F. W. J. Hekking,
Physical Review B 88, 174507 (2013).
joint publication UJF-AALTO,
http://fr.arxiv.org/abs/1307.5446

“Quantum Phase-Slip Junction Under Microwave Irradiation”,
Angelo Di Marco, Frank W. J. Hekking, Gianluca Rastelli,
Physical Review B 91, 184512 (2015).
http://fr.arxiv.org/abs/1502.04878

“Effect of photon-assisted Andreev reflection in the accuracy of a SINIS turnstile”,
A. Di Marco, V. F. Maisi, F. W. J. Hekking, J. P. Pekola,
Physical Review B 92, 094514 (2015).
joint publication UJF-AALTO,
http://fr.arxiv.org/abs/1507.03900

“Experimental realization of a Coulomb blockade refrigerator”,
A. V. Feshchenko, J. V. Koski, J. P. Pekola,
Physical Review B 90, 201407(R) (2014).
http://fr.arxiv.org/abs/1409.5637

“Tunnel-Junction Thermometry Down to Millikelvin Temperatures”,
A. V. Feshchenko, L. Casparis, I. M. Khaymovich, D. Maradan, O. P. Saira, M. Palma, M. Meschke, J. P. Pekola, D. M. Zumbuehl,
Physical Review Applied 4,  034001 (2015).
http://fr.arxiv.org/abs/1504.03841

“Andreev Current for low temperature thermometry”,
T. Faivre, D. S. Golubev, J. P. Pekola,
Applied Physics Letters 106, 182602 (2015).
http://fr.arxiv.org/abs/1503.03972


Task 4.1
[Llopis] “Determination of energy level alignment at metal/molecule interfaces by in-device electrical spectroscopy”,
M. Gobbi, L. Pietrobon, A. Atxabal, A. Bedoya-Pinto, X. Sun, F. Golmar, R. Llopis, F. Casanova, L. E. Hueso,
NATURE COMMUNICATIONS 5, 4161 (2014)

[Allen] Transport measurements on carbon nanotubes structurally characterized by electron diffraction”,
C. S. Allen, M. D. Elkin, G. Burnell, and B. J. Hickey, C. Zhang, S. Hofmann, and J. Robertson,
Phys. Rev. B 84, 115444 (2011)


“Determination of energy level alignment at metal/molecule interfaces by in-device electrical spectroscopy”,
M. Gobbi, L. Pietrobon, A. Atxabal, A. Bedoya-Pinto, X. Sun, F. Golmar, R. Llopis, F. Casanova, L. E. Hueso,
Nature Communications 5, 4161 (2014).



Task 4.2
[Jacobsen] “Transport in a three-terminal graphene quantum dot in the multi-level regime“,
A. Jacobsen, P. Simonet, K. Ensslin and T. Ihn, N. J. Phys. 14, 023052 (2012)

[Prochazka] “Ultrasmooth metallic foils for growth of high quality graphene by chemical vapor deposition”,
P. Prochazka, J. Mach, D. Bischoff, Z. Liskova, P. Dvorak, M. Vanatka, P. Simonet, A. Varlet, D. Hemzal, M. Petrenec, L. Kalina, M. Bartosik, K. Ensslin, P. Varga, J. Cechal, T. Sikola,
NANOTECHNOLOGY 25, 185601 (2014)

[Jacobsen] “Finite-bias spectroscopy of a three-terminal graphene quantum dot in the multilevel regime”,
A. Jacobsen, P. Simonet, K. Ensslin, T. Ihn,
PHYSICAL REVIEW B 89, 165413 (2014)
http://arxiv.org/abs/1405.1393

[Bischoff] “Electronic triple-dot transport through a bilayer graphene island with ultrasmall constrictions”,
D. Bischoff, A. Varlet, P. Simonet, T. Ihn, K. Ensslin
http://arxiv.org/abs/1406.5296

[Varlet] “Fabry-Pérot interference in gapped bilayer graphene with broken anti-Klein tunneling”,
A. Varlet, M.-H. Liu, V. Krueckl, D. Bischoff, P. Simonet, K. Watanabe, T. Taniguchi, K. Richter, K. Ensslin, Thomas Ihn
http://arxiv.org/abs/1406.352


“Localized charge carriers in graphene nanodevices”,
D. Bischoff, A. Varlet, P. Simonet, M. Eich, H. C. Overweg, T. Ihn, K. Ensslin,
Applied Physics Review 2, 031301 (2015).

“Capacitive coupling in hybrid graphene/GaAs nanostructures”,
P. Simonet, C. Roessler, T. Kraehenmann, A. Varlet, T. Ihn, K. Ensslin, C. Reichl, W. Wegscheider,
Applied Physics Letters 107, 023105 2015).
http://fr.arxiv.org/abs/1503.07100

“Resonant electron tunneling in a tip-controlled potential landscape”,
N. Pascher, F. Timpu, C. Rössler, T. Ihn, K. Ensslin, C. Reichel, and W. Wegscheider,
Physical Review B  89, 245408 (2014).

“Anomalous sequence of quantum Hall liquids revealing tunable Lifshitz transition in bilayer graphene”,
A. Varlet, D. Bischoff, P. Simonet, K. Watanabe, T. Taniguchi, T. Ihn, K. Ensslin, M. Mucha-Kruczynski, and V. I. Fal'ko,
Physical Review Letters 113, 116602 (2014).

“Measuring the local quantum capacitance of graphene using a strongly coupled graphene nanoribbon”,
D. Bischoff, M. Eich, A. Varlet, P. Simonet, T. Ihn, K. Ensslin,
Physical Review B 91, 115441 (2015).
http://fr.arxiv.org/abs/1505.07618

“Graphene nanoribbons: relevance of etching process”,
Pauline Simonet, Dominik Bischoff, Annina Moser, Thomas Ihn, Klaus Ensslin,
Journal of Applied Physics, 117, 184303 (2015).
http://fr.arxiv.org/abs/1503.01921

“Imaging the Conductance of Integer and Fractional Quantum Hall Edge States”,
N. Pascher, C. Rössler, T. Ihn, K. Ensslin, C. Reichl, and W. Wegscheider,
Physical Review X 4, 11014 (2014).

“Gate-Controlled Energy Barrier at a Graphene/Molecular Semiconductor Junction”,
S. Parui, L. Pietrobon, D. Ciudad, S. Velez, X. Sun, F. Casanova, P. Stoliar, L. E. Hueso,
Advanced Functional Materiels 25, 2972-2979 (2015).

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