A warm wel­come!

The group for optoelectronic materials and devices deals with the production and characterisation of semiconductor structures for optical and electronic applications, e.g. in quantum information technology. Quantum effects are utilised in these semiconductor structures in order to obtain novel properties. One example of this is the atomically sharp energy levels in semiconductor quantum dots.

Re­search

One focus of our work is the production of semiconductor heterostructures using molecular beam epitaxy (MBE), an ultra-high vacuum deposition process that enables the highest material qualities and purities. After growth, these heterostructures are characterised structurally, optically and electrically. For structural analyses, we use high-resolution X-ray diffraction, scanning and transmission electron microscopy and atomic force microscopy. Optically, the samples are analysed using photoluminescence spectroscopy, reflection measurements and spatial resolution methods. Electrical characterisation is mainly carried out using Hall measurements, capacitance-voltage spectroscopy and current-voltage measurements.

Net­works and Pro­jects

PhoQS

Institute for Photonic Quantum Systems

TRR 142: Tailored Non­lin­ear Photon­ics: From Fun­da­ment­al Con­cepts to Func­tion­al Struc­tures

CeOPP: Cen­ter for Op­to­elec­tron­ics and Photon­ics

Everything in a nut­shell

Team

Would you also like to become part of our team? Then get in touch with us!

Rows of seats filled with students in the Auditorium maximum of Paderborn University.

Teach­ing

The AG Reuter participates in the university's physics education programme with changing courses as part of various Bachelor's and Master's degree programmes.
The exact programme for the current semester can be found under PAUL.

Clipboard with clothing sketch on it.

SHK/WHB po­s­i­tions

The group welcomes interested and committed students who would like to work on our research projects as SHK or WHB. If you are interested, please contact Prof Dr Dirk Reuter.

news

06.12.2022

Wie funk­tionier­en ei­gent­lich Laser? – MINT-EC Camp zur Laserphysik be­sucht UPB

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05.12.2022

Prof. Dr. Lingling Huang er­hält Friedrich Wil­helm Bessel-Forschung­s­pre­is

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02.12.2022

Von Quanten mit spukhaften Fern­wirkun­gen: Öf­fent­liche Abend­veran­stal­tung zum Physik-No­bel­pre­is 2022 an der Uni­versität Pader­born

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16.11.2022

De­part­ment der Physik beschafft höch­stau­flösendes Rönt­gendif­frak­to­met­er

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21.10.2022

Lehr-Lern­ma­teri­ali­en für inklus­iven Sachunter­richt für sieben os­twest­fäl­is­che Grundschu­len

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21.10.2022

In­teresse an Natur­wis­senschaften ab der Grundschule fördern - neues BMBF-Pro­jekt „trans­MINT4.0“

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20.09.2022

Poster award of the Ger­man Phys­ic­al So­ci­ety for Dr. To­bi­as Henks­mei­er

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27.09.2022

Event-Physik-Show der Uni­versität Pader­born begeistert Zuschauer­*innen

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08.09.2022

Be­son­dere Show­vor­le­sung zum 50-jährigen Ju­biläum der Uni­versität Pader­born

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22.08.2022

Quanten­com­puter? Das PhoQS lädt zum Tag der of­fen­en Tür ein

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22.08.2022

Jung­stud­i­er­enden-Pro­gramm der Physik an der Uni­versität Pader­born – In­fover­an­stal­tung für in­teressierte Schüler:innen und El­tern am 30.…

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17.08.2022

Neut­rale Teilchen kon­trol­lier­en, als ob sie ge­laden wären: Neuer Ef­fekt der Licht-Ma­ter­ie-Wech­sel­wirkung beo­bachtet

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09.08.2022

PaderPhy - Der Pader­borner Physik Pod­cast

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18.07.2022

Spannender Ein­blick in Stu­di­um und Beruf: Das Som­mer­Camp Physik 2022

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21.06.2022

Nano­struc­tured Sur­faces for Fu­ture Quantum Com­puter Chips

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More news

Pub­lic­a­tions

Remote epitaxy of In(x)Ga(1-x)As(001) on graphene covered GaAs(001) substrates

T. Henksmeier, J.F. Schulz, E. Kluth, M. Feneberg, R. Goldhahn, A.M. Sanchez, M. Voigt, G. Grundmeier, D. Reuter, Journal of Crystal Growth 593 (2022).

Nonlinear down-conversion in a single quantum dot

B. Jonas, D.F. Heinze, E. Schöll, P. Kallert, T. Langer, S. Krehs, A. Widhalm, K. Jöns, D. Reuter, A. Zrenner, Nonlinear Down-Conversion in a Single Quantum Dot, LibreCat University, 2022.

Strain Relaxation in InAs Nanoislands on top of GaAs (111) A Nanopillars

T. Riedl, V. Kunnathully, A. Trapp, D. Reuter, J. Lindner, in: 2018.

MBE Growth of InAs on Nanopillar-Patterned GaAs (111) A

T. Riedl, V. Kunnathully, A. Trapp, D. Reuter, J. Lindner, in: 2018.

InAs heteroepitaxy on GaAs patterned by nanosphere lithography

V. Kunnathully, T. Riedl, A. Karlisch, D. Reuter, J. Lindner, in: 2017.

Show all publications

Con­tact us

Prof. Dr. Dirk Reuter

Optoelectronic materials and devices

Room P8.2.12
Paderborn University
Pohlweg 47-49
33098 Paderborn