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Add PT fonts option, fix dashes and mu characters
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kadykov committed Oct 12, 2024
1 parent ddb196c commit b7ccefc
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2 changes: 2 additions & 0 deletions Dockerfile
Original file line number Diff line number Diff line change
Expand Up @@ -10,11 +10,13 @@ FROM debian:12.7-slim
COPY --from=Builder typst-x86_64-unknown-linux-musl/typst /usr/bin/typst

ARG FONTS_IBM_PLEX_VERSION=6.1.1-1
ARG FONTS_PARATYPE_VERSION=20181108-3

RUN sed -i 's/main/main contrib/' /etc/apt/sources.list.d/debian.sources \
&& apt-get -q update \
&& apt-get install -qy --no-install-recommends \
fonts-ibm-plex=${FONTS_IBM_PLEX_VERSION} \
fonts-paratype=${FONTS_PARATYPE_VERSION} \
&& apt-get purge -y --auto-remove software-properties-common \
&& apt-get clean \
&& rm -rf /var/lib/apt/lists/* /tmp/* /var/tmp/* /var/log/*
68 changes: 36 additions & 32 deletions kadykov-cv.typ
Original file line number Diff line number Diff line change
Expand Up @@ -59,15 +59,18 @@
)

#set text(
// font: "IBM Plex Serif",
font: "IBM Plex Sans",
// font: "IBM Plex Sans Cond Text",
size: 12pt,
// font: "IBM Plex Sans", size: 11.5pt,
// font: "IBM Plex Serif", size: 11pt,
font: "PT Sans", size: 12pt,
// font: "PT Serif", size: 11.5pt,
lang: "en",
)

#show heading: set text(
// font: "IBM Plex Sans",
font: "IBM Plex Serif",
// font: "IBM Plex Sans", size: 1.2em, // stretch: 100%, // weight: "medium",
// font: "IBM Plex Serif", size: 1.2em,
// font: "PT Sans", size: 1.35em,
font: "PT Serif", size: 1.25em,
)

// #show link: underline
Expand All @@ -85,7 +88,7 @@

#set par(
justify: true,
leading: 0.8em,
leading: 1em,
)

#let secline() = {v(-0.3em); line(length: 100%); v(-0.1em)}
Expand All @@ -94,6 +97,7 @@
"photo.jpg",
width: 30%,
)

_Specializing in Data Analysis, Signal Processing, Photonics,
Solid-State Physics, and Cryogenic Measurements_

Expand Down Expand Up @@ -125,7 +129,7 @@ and continuous integration/continuous delivery

== #link("https://www.multitel.eu/expertise/applied-photonics/terahertz-spectroscopy-and-imaging/")[Multitel A.S.B.L.]

_Jul.~2021 Aug.~2024_
_Jul.~2021 -- Aug.~2024_
_#link("https://www.openstreetmap.org/#map=19/50.45756/3.92540")[Mons, Belgium]_
_| Innovation center specializing in_
_#link("https://www.multitel.eu/expertise/applied-photonics/")[applied photonics],_
Expand All @@ -152,9 +156,9 @@ _and #link("https://railways.multitel.be/")[railway certification]._
testing, #link("https://about.gitlab.com/topics/ci-cd/")[CI/CD]
pipelines, and comprehensive documentation.

== #link("https://www.lne.fr/en/research-and-development")[Laboratoire National de Métrologie et dEssais (LNE)]
== #link("https://www.lne.fr/en/research-and-development")[Laboratoire National de Métrologie et d'Essais (LNE)]

_Sep.~2018 Sep.~2020_
_Sep.~2018 -- Sep.~2020_
_Trappes, France | National Metrological Laboratory_
_with~1000 employees._

Expand All @@ -170,7 +174,7 @@ _with~1000 employees._

== #link("http://www.ipmras.ru/en/institute/scientific-departments/department-110/")[Institute for Physics of Microstructures RAS]

_May~2017 Sep.~2018_
_May~2017 -- Sep.~2018_
_#link("https://www.openstreetmap.org/#map=17/56.29878/43.97990")[Nizhny Novgorod, Russia]_
_| State-owned research institute specializing in photonics._

Expand All @@ -189,7 +193,7 @@ _| State-owned research institute specializing in photonics._
_#link("https://coulomb.umontpellier.fr/?lang=en")[Laboratoire Charles Coulomb (L2C)]_
_\/_
_#link("http://www.ipmras.ru/en/institute/scientific-departments/department-110/")[IPM RAS]_
_| Sep.~2014 Dec.~2017_
_| Sep.~2014 -- Dec.~2017_
_#link("https://www.openstreetmap.org/#map=18/43.63339/3.86312")[Montpellier, France]_
_\/_
_#link("https://www.openstreetmap.org/#map=17/56.29878/43.97990")[Nizhny Novgorod, Russia]_
Expand Down Expand Up @@ -275,18 +279,18 @@ _#link("https://www.openstreetmap.org/#map=17/56.29878/43.97990")[Nizhny Novgoro
*APL Materials*, 5(3), _035503_, 2017
+ Yahniuk, I., Krishtopenko, S.S., Grabecki, G. et al.,
#link("https://dx.doi.org/10.1038/s41535-019-0154-3")[_Magneto-transport in inverted HgTe quantum wells_],
*npj Quantum Materials*, 4(1), _18_, 2019
*npj Quantum Materials*, 4(1), _1--8_, 2019
+ Marcinkiewicz, M., Ruffenach, S., Krishtopenko, S.S. et al.,
#link("https://dx.doi.org/10.1103/PhysRevB.96.035405")[_Temperature-driven single-valley Dirac fermions in HgTe quantum wells_],
*Physical Review B*, 96(3), _035405_, 2017
+ Morozov, S.V., Rumyantsev, V.V., Fadeev, M. et al.,
#link("https://dx.doi.org/10.1063/1.4996966")[_Stimulated emission from HgCdTe quantum well heterostructures at wavelengths up to 19.5\~um_],
#link("https://dx.doi.org/10.1063/1.4996966")[_Stimulated emission from HgCdTe quantum well heterostructures at wavelengths up to 19.5~μm_],
*Applied Physics Letters*, 111(19), _192101_, 2017
+ Morozov, S.V., Rumyantsev, V.V., Kadykov, A.M. et al.,
#link("https://dx.doi.org/10.1063/1.4943087")[_Long wavelength stimulated emission up to 9.5\~um from HgCdTe quantum well heterostructures_],
#link("https://dx.doi.org/10.1063/1.4943087")[_Long wavelength stimulated emission up to 9.5~μm from HgCdTe quantum well heterostructures_],
*Applied Physics Letters*, 108(9), _092104_, 2016
+ Morozov, S.V., Rumyantsev, V.V., Dubinov, A.A. et al.,
#link("https://dx.doi.org/10.1063/1.4926927")[_Long wavelength superluminescence from narrow gap HgCdTe epilayer at 100\~K_],
#link("https://dx.doi.org/10.1063/1.4926927")[_Long wavelength superluminescence from narrow gap HgCdTe epilayer at 100~K_],
*Applied Physics Letters*, 107(4), _042105_, 2015
+ Morozov, S.V., Rumyantsev, V.V., Antonov, A. et al.,
#link("https://dx.doi.org/10.1063/1.4890416")[_Time resolved photoluminescence spectroscopy of narrow gap Hg1-xCdxTe/CdyHg1-yTe quantum well heterostructures_],
Expand All @@ -296,62 +300,62 @@ _#link("https://www.openstreetmap.org/#map=17/56.29878/43.97990")[Nizhny Novgoro
*Semiconductor Science and Technology*, 32(9), _095007_,
2017
+ Fadeev, M.A., Rumyantsev, V.V., Kadykov, A.M. et al.,
#link("https://dx.doi.org/10.1364/OE.26.012755")[_Stimulated emission in the 2.83.5\~um wavelength range from Peltier cooled HgTe/CdHgTe quantum well heterostructures_],
#link("https://dx.doi.org/10.1364/OE.26.012755")[_Stimulated emission in the 2.8--3.5~μm wavelength range from Peltier cooled HgTe/CdHgTe quantum well heterostructures_],
*Optics Express*, 26(10), _12755_, 2018
+ Kadykov, A.M., Consejo, C., Marcinkiewicz, M. et al.,
#link("https://dx.doi.org/10.1002/pssc.201510264")[_Observation of topological phase transition by terahertz photoconductivity in HgTe-based transistors_],
*physica status solidi (c)*, 13(7), _534537_, 2016
*physica status solidi (c)*, 13(7), _534--537_, 2016
+ Kadykov, A.M., Consejo, C., Teppe, F. et al.,
#link("https://dx.doi.org/10.1088/1742-6596/647/1/012009")[_Terahertz excitations in HgTe-based field effect transistors_],
*Journal of Physics: Conference Series*, 647(1),
_012009_, 2015
+ Bovkun, L.S., Krishtopenko, S.S., Ikonnikov, A.V. et al.,
#link("https://dx.doi.org/10.1134/S1063782616110063")[_Magnetospectroscopy of double HgTe/CdHgTe quantum wells_],
*Semiconductors*, 50(11), _15321538_, 2016
*Semiconductors*, 50(11), _1532--1538_, 2016
+ Aleshkin, V.Y., Gavrilenko, L.V., Gaponova, D.M. et al.,
#link("https://dx.doi.org/10.1134/S1063776113130013")[_Nonresonant radiative exciton transfer by near field between quantum wells_],
*Journal of Experimental and Theoretical Physics*, 117(5),
_944949_, 2013
_944--949_, 2013
+ Morozov, S.V., Rumyantsev, V.V., Kadykov, A.M. et al.,
#link("https://dx.doi.org/10.1088/1742-6596/647/1/012008")[_Investigation of possibility of VLWIR lasing in HgCdTe based heterostructures_],
*Journal of Physics: Conference Series*, 647(1),
_012008_, 2015
+ Kozlov, D.V., Rumyantsev, V.V., Morozov, S.V. et al.,
#link("https://dx.doi.org/10.1134/S1063782615120106")[_Impurity-induced photoconductivity of narrow-gap CadmiumMercuryTelluride structures_],
*Semiconductors*, 49(12), _16051610_, 2015
#link("https://dx.doi.org/10.1134/S1063782615120106")[_Impurity-induced photoconductivity of narrow-gap Cadmium--Mercury--Telluride structures_],
*Semiconductors*, 49(12), _1605--1610_, 2015
+ Rumyantsev, V.V., Fadeev, M.A., Morozov, S.V. et al.,
#link("https://dx.doi.org/10.1134/S1063782616120174")[_Long-wavelength stimulated emission and carrier lifetimes in HgCdTe-based waveguide structures with quantum wells_],
*Semiconductors*, 50(12), _16511656_, 2016
*Semiconductors*, 50(12), _1651--1656_, 2016
+ Ikonnikov, A.V., Bovkun, L.S., Rumyantsev, V.V. et al.,
#link("https://dx.doi.org/10.1134/S1063782617120090")[_On the band spectrum in p-type HgTe/CdHgTe heterostructures and its transformation under temperature variation_],
*Semiconductors*, 51(12), _15311536_, 2017
*Semiconductors*, 51(12), _1531--1536_, 2017
+ Rumyantsev, V.V., Kadykov, A.M., Fadeev, M.A.~et al.,
#link("https://dx.doi.org/10.1134/S106378261712017X")[_Investigation of HgCdTe waveguide structures with quantum wells for long-wavelength stimulated emission_],
*Semiconductors*, 51(12), _15571561_, 2017
*Semiconductors*, 51(12), _1557--1561_, 2017
+ Krishtopenko, S.S., Ikonnikov, A.V., Maremyanin, K.V. et al.,
#link("https://dx.doi.org/10.1134/S1063782617010109")[_Cyclotron resonance of Dirac fermions in InAs/GaSb/InAs quantum wells_],
*Semiconductors*, 51(1), _3842_, 2017
*Semiconductors*, 51(1), _38--42_, 2017
+ Kozlov, D.V., Rumyantsev, V.V., Morozov, S.V. et al.,
#link("https://dx.doi.org/10.1134/S1063782616120113")[_Mercury vacancies as divalent acceptors in Hg1-xCdxTe/CdyHg1-yTe structures with quantum wells_],
*Semiconductors*, 50(12), _16621668_, 2016
*Semiconductors*, 50(12), _1662--1668_, 2016
+ Rumyantsev, V.V., Bovkun, L., Kadykov, A.M. et al.,
#link("https://dx.doi.org/10.1134/S1063782618040255")[_Magnetooptical Studies and Stimulated Emission in Narrow Gap HgTe/CdHgTe Structures in the Very Long Wavelength Infrared Range_],
*Semiconductors*, 52(4), 2018
+ Kadykov, A.M., Teppe, F., Consejo, C. et al.,
#link("http://mmi.univ-savoie.fr/agence/8thzdays/siteANG/")[_Terahertz excitations in HgTe-based field effect transistors_],
_113114_, 2015
_113--114_, 2015
+ Gavrilenko, V.I., Morozov, S.V., Rumyantsev, V.V. et al.,
#link("https://dx.doi.org/10.1109/MIKON.2016.7492017")[_THz lasers based on narrow-gap semiconductors_],
_14_, 2016
_1--4_, 2016
+ Marcinkiewicz, M., Krishtopenko, S.S., Ruffenach, S. et al.,
#link("https://dx.doi.org/10.1109/IRMMW-THz.2016.7758790")[_THz magnetospectroscopy of double HgTe quantum well_],
_12_, 2016
_1--2_, 2016
+ Morozov, S.V., Rumyantsev, V.V., Kadykov, A.M. et al.,
#link("https://dx.doi.org/10.1109/IRMMW-THz.2016.7758927")[_Long-wavelength stimulated emission in HgCdTe quantum well waveguide heterostructures_],
2016-Novem, _12_, 2016
2016-Novem, _1--2_, 2016
+ But, D.B., Consejo, C., Krishtopenko, S.S. et al.,
#link("https://dx.doi.org/10.1109/IRMMW-THz.2016.7758889")[_Terahertz cyclotron emission from HgCdTe bulk films_],
2016-Novem, _12_, 2016
2016-Novem, _1--2_, 2016
+ Yahniuk, I., Krishtopenko, S.S., Grabecki, G. et al.,
_Graphene-like band structure (Hg, Cd) Te Quantum Wells for
Quantum Hall Effect Metrology Applications_, _229_, 2017

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