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Data underlying the paper "Direct signatures of d-level hybridization and dimerization in magnetic adatom chains on a superconductor"

Author: Rütten, Lisa M.; Liebhaber, Eva; Reecht, Gaël; Rossnagel, Kai; Franke, Katharina J.
Publisher: Zenodo
DOI: 10.5281/zenodo.17533355
Source: https://zenodo.org/records/17533355/files/directory.pdf
O iginal expe imen al da a o he pape
”Di ec signa u es o d-le el hyb idiza ion and dime iza ion in magne ic ada om
chains on a supe conduc o “
Lisa M. Rü en,1E a Liebhabe ,1Gaël Reech ,1Kai Rossnagel,2, 3 and Ka ha ina J. F anke1
1Fachbe eich Physik, F eie Uni e si ä Be lin, 14195 Be lin, Ge many
2Ins i u ü Expe imen elle und Angewand e Physik, Ch is ian-Alb ech s-Uni e si ä zu Kiel, 24098 Kiel, Ge many
3Rup ech Haensel Labo a o y, Deu sches Elek onen-Synch o on DESY, 22607 Hambu g, Ge many
This di ec o y con ains he expe imen al da a used in he pape ”d-le el hyb idiza ion in Yu-Shiba-Rusino dime s
and chains“. In he ollowing we p o ide a sho guide on how o handle he iles in his di ec o y.
All da a iles (.sxm and .da ) can be opened and b owsed using Spec aFox [1]. The .sxm- iles can u he be
opened and p ocessed wi h WSxM [2]. Bo h p og ams a e ee open-sou ce so wa e solu ions o managing, p o-
cessing, and e alua ing scien i ic scanning p obe mic oscopy (SPM) da a iles. Spec aFox can be downloaded a
h ps://www.spec a ox.com/. WSxM can be downloaded a h p://wsxm.eu/.
Da a o Figu e 1
Raw da a iles:
da a Fig1
monome :
cloud_No08BO_001.da
cloud_No08BO_002.da
image_712.sxm
3a dime :
cloud_No08BA_001.da
cloud_No08BA_002.da
cloud_No08BA_003.da
image_645.sxm
2a dime :
cloud_No08BR_001.da
cloud_No08BR_002.da
cloud_No08BR_003.da
image_721.sxm
1a dime :
cloud_No08CB_001.da
cloud_No08CB_002.da
cloud_No08CB_003.da
image_745.sxm
All opog aphies we e smoo hed in WSxM (Gaussian smoo h, 2p ).
All dI/dV spec a we e o se co ec ed wi h espec o he co esponding subs a e spec um and hen no malized o [-4.0mV,-5.0mV].
Da a o Figu e 2
Raw da a iles:
da a Fig2
(a)
monome :
line_No14AK_001.da
line_No14AK_012.da
line_No14AK_018.da
3a dime :
line_No14AD_001.da
line_No14AD_017.da
line_No14AD_023.da
2a dime :
line_No14AA_001.da
line_No14AA_021.da
line_No14AA_025.da
1a dime :
line_No14AN_001.da
line_No14AN_019.da
line_No14AN_024.da
%
(b)
image_078.sxm
image_069.sxm
image_065.sxm
image_084.sxm
%
(c)
line_No14AK_001.da - line_No14AK_036.da
line_No14AD_001.da - line_No14AD_047.da
line_No14AA_001.da - line_No14AA_043.da
line_No14AN_001.da - line_No14AN_039.da
2
All opog aphies we e smoo hed in WSxM (Gaussian smoo h, 2p ).
All dI/dV spec a we e a e aged o e he o wa d and backwa d sweeps.
Da a o Figu e 3
Raw da a iles:
da a Fig3
(a)
image_288.sxm
(b)
cons _dos_No14_061.sxm
(c)
image_264.sxm
(d)
cons _dos_No14_001.sxm
(e)
image_295.sxm
( )
cons _dos_No14_093.sxm
(g)
cons _dos_No14_077.sxm
All images we e smoo hed in WSxM (Gaussian smoo h, 2p ).
Da a o Figu e 4
Raw da a iles:
da a Fig4
(a)
line_No03DB_001.da
line_No03DB_016.da
line_No03DB_020.da
line_No03DB_024.da
line_No03DB_029.da
%
(b)
image_055.sxm
%
(c)
line_No03DB_001.da - line_No03DB_057.da
%
(d)
line_No03DE_001.da
line_No03DE_019.da
line_No03DE_025.da
line_No03DE_030.da
%
(e)
image_060.sxm
%
( )
line_No03DE_001.da - line_No03DE_061.da
%
(g)
image_215.sxm
image_216.sxm
BiasSpec_049.da
All opog aphies we e smoo hed in WSxM (Gaussian smoo h, 2p ).
All dI/dV spec a we e a e aged o e he o wa d and backwa d sweeps.
Da a o Figu e 5
Raw da a iles:
da a Fig5
(a)
line_No03BW_001.da
line_No03BW_036.da
line_No03CA_044.da
%
(b)
line_No03BW_001.da - line_No03BW_053.da
image_727.sxm
%
(c)
line_No03CA_001.da - line_No03CA_066.da
image_599.sxm
All opog aphies we e smoo hed in WSxM (Gaussian smoo h, 2p ).
All dI/dV spec a we e o se co ec ed wi h espec o he co esponding subs a e spec um and hen no malized o [-4.0mV,-3.5mV].
Da a o Figu e S1
Raw da a iles:
(b) same opog aphies as Figu e 1
3
da a Fig1
image_712.sxm
image_645.sxm
image_721.sxm
image_745.sxm
%
(c)
da a FigS1
dIdV_No08_029.sxm
dIdV_No08_035.sxm
All opog aphies and dI/dV maps we e smoo hed in WSxM (Gaussian smoo h, 2p ).
Da a o Figu e S2
Raw da a iles:
da a FigS2
(a)
image_051.sxm
cloud_No01AC_001
cloud_No01AC_002
%
(b)
image_059.sxm
cloud_No01AE_001
cloud_No01AE_003
cloud_No01AE_004
All opog aphies and dI/dV maps we e smoo hed in WSxM (Gaussian smoo h, 2p ).
Da a o Figu e S3
Raw da a iles:
da a FigS3
(a)
line_No14AL_001
line_No14AL_018
image_078.sxm
%
(b)
line_No14AO_001
line_No14AO_019
line_No14AO_024
image_084.sxm
All opog aphies and dI/dV maps we e smoo hed in WSxM (Gaussian smoo h, 2p ).
All dI/dV spec a we e a e aged o e he o wa d and backwa d sweeps.
Da a o Figu e S4
Raw da a iles: (Spec a ep oduced om Figu e 2 and Figu e 4.)
(a)
da a Fig2
monome :
line_No14AK_001.da
line_No14AK_012.da
line_No14AK_018.da
3a dime :
line_No14AD_001.da
line_No14AD_017.da
line_No14AD_023.da
2a dime :
line_No14AA_001.da
line_No14AA_021.da
line_No14AA_025.da
1a dime :
line_No14AN_001.da
line_No14AN_019.da
line_No14AN_024.da
%
da a Fig4
6 a oms
line_No03DB_001.da
line_No03DB_016.da
line_No03DB_020.da
line_No03DB_024.da
line_No03DB_029.da
7 a oms
line_No03DE_001.da
line_No03DE_019.da
line_No03DE_025.da
line_No03DE_030.da
%
da a FigS4
(b)
4
image_288.sxm
cons _dos_No14_061.sxm
cons _dos_No14_063.sxm
cons _dos_No14_067.sxm
cons _dos_No14_076.sxm
%
(c)
image_264.sxm
cons _dos_No14_001.sxm
cons _dos_No14_002.sxm
cons _dos_No14_003.sxm
cons _dos_No14_008.sxm
cons _dos_No14_019.sxm
%
(d)
image_295.sxm
cons _dos_No14_077.sxm
cons _dos_No14_078.sxm
cons _dos_No14_079.sxm
cons _dos_No14_083.sxm
cons _dos_No14_093.sxm
All opog aphies we e smoo hed in WSxM (Gaussian smoo h, 2p ).
All dI/dV spec a we e a e aged o e he o wa d and backwa d sweeps.
Da a o Figu e S5
Raw da a iles:
da a FigS5
(a)
image_220.sxm
(b)
cons _dos_No03_001.sxm
cons _dos_No03_002.sxm
cons _dos_No03_003.sxm
cons _dos_No03_004.sxm
cons _dos_No03_006.sxm
cons _dos_No03_010.sxm
%
(c)
image_230.sxm
%
(d)
image_234.sxm
%
(e)
cons _dos_No14_001.sxm
cons _dos_No14_002.sxm
cons _dos_No14_003.sxm
cons _dos_No14_008.sxm
cons _dos_No14_019.sxm
All opog aphies we e smoo hed in WSxM (Gaussian smoo h, 2p ).
Da a o Figu e S6
Raw da a iles:
da a FigS6
(a)
cloud_No02AY_001
cloud_No02AY_002
cloud_No02AY_003
(b)
image_074.sxm
(c)
line_No02AZ_001.da - line_No02AZ_039.da
(d)
cloud_No08CB_001
cloud_No08CB_002
cloud_No08CB_003
(b)
image_745.sxm
(c)
line_No08BC_001.da - line_No08CB_040.da
All opog aphies we e smoo hed in WSxM (Gaussian smoo h, 2p ).
All low ene gy dI/dV spec a we e o se co ec ed wi h espec o he co esponding subs a e spec um and hen no malized o [-4.0mV,-5.0mV].
All cons an -cu en dI/dV spec a we e a e aged o e he o wa d and backwa d sweeps.
Da a o Figu e S7
Raw da a iles:
da a Fig4
(a)
image_055.sxm
5
%
(b)
image_215.sxm
%
(c)
image_216.sxm
All opog aphies we e smoo hed in WSxM (Gaussian smoo h, 2p ).
Da a o Figu e S8
Raw da a iles:
da a FigS8
(a)
image_120.sxm
BiasSpec_042.da
image_123.sxm
%
(b)
image_165.sxm
cloud_No08AS_004.da
image_166.sxm
BiasSpec_046.da
image_168.sxm
%
(c)
image_192.sxm
cloud_No08AY_002.da
image_194.sxm
All opog aphies we e smoo hed in WSxM (Gaussian smoo h, 2p ).
Da a o Figu e S9
Raw da a iles:
da a FigS9
40 a oms:
image_531.sxm
cloud_No08EH_001.da - cloud_No08EH_040
%
41 a oms:
image_540.sxm
cloud_No08EI_001.da - cloud_No08EI_041
All opog aphies we e smoo hed in WSxM (Gaussian smoo h, 2p ).
All low ene gy dI/dV spec a we e o se co ec ed wi h espec o he co esponding subs a e spec um and hen no malized o [-4.0mV,-4.5mV].
[1] M. Ruby, So wa eX 5, 31 (2016).
[2] I. Ho cas, R. Fe nández, J. Gomez-Rod iguez, J. Colche o, J. Gómez-He e o, and A. Ba o, Re . Sci. Ins um. 78, 013705
(2007).