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14 results for “TIme crystal”

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zenodo48/100

Nonlinear two-level dynamics of quantum time crystals

<p>Dataset for the manuscript titled &quot;AC Josephson effect between two superfluid time crystals&quot; by the same authors.</p>

opencc-by-4.0May 2022View details →
zenodo44/100

Dataset for the article "Influence of oxidative and consequential reductive annealing on the photoluminescence intensity, decay time and morphology of ZnO single-crystal faces".

<p>Dataset for the article "Influence of oxidative and consequential reductive annealing on the photoluminescence intensity, decay time and morphology of ZnO single-crystal facets".</p> <p>David John1,2, Zdeněk Reme&scaron;1, Radim Nov&aacute;k1, &Scaron;těp&aacute;n Reme&scaron;1, Jakub Volf1,3,4, Oleg Babčenko1, Egor Ukraintsev5, Bohuslav Rezek5, and Maksym Buryi3</p> <p>1 Institute of Physics of the Czech Academy of Sciences, Cukrovarnick&aacute; 10/112, 162 00, Prague, Czech Republic<br>2 Faculty of Nuclear Sciences and Physical Engineering, Czech Technical University, Břehov&aacute; 7, 115019, Prague, Czech Republic<br>3 Institute of Plasma Physics of the Czech Academy of Sciences, U Slovanky 2525/1a, 182 00, Prague, Czech Republic&nbsp;<br>4 Department of Inorganic Chemistry, University of Chemistry and Technology, Technick&aacute; 5, Prague 6, 166 28, Czech Republic<br>5 Faculty of Electrical Engineering of the Czech Technical University, Technick&aacute; 2, 160 00, Prague, Czech Republic</p> <p>&nbsp;</p> <p>Dataset description:</p> <p>08_08_2024_ZnO_41a_700C_O_CF4_Multi75_10x10um.0_00000 &nbsp; &nbsp; &nbsp; &nbsp;AFM data<br>08_08_2024_ZnO_41a_700C_O_CF4_Multi75_10x10um.0_00003 &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; AFM data<br>16_08_2024_ZnO_700C_O_CF4Multi_10x10um.0_00001 &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp;AFM data<br>16_08_2024_ZnO_700C_O_CF4Multi_10x10um.0_00003 &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp;AFM data<br>afm zn &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp;AFM data<br>data phase shift fit &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp;phase shift data<br>grafy phase shift fit &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; phase shift data<br>ZnO faces &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; optical images</p>

opencc-by-4.0Sep 2024View details →
zenodo40/100

Data for "Emergent parametric resonances and time-crystal phases in driven Bardeen-Cooper-Schrieffer systems"

<p>These files contain the data for the article &quot;Emergent parametric resonances and time-crystal phases in driven Bardeen-Cooper-Schrieffer systems&quot; (https://journals.aps.org/prresearch/abstract/10.1103/PhysRevResearch.3.L042023). In each .zip file,&nbsp;it is possible to find not only the relevant data but also a script (.sh file extension)&nbsp;to generate each one of the 6&nbsp;figures shown in the paper and Supplemental Material. The file &quot;Phasediagram.zip&quot; contains the data corresponding to the dynamical phase diagrams (Fig. 1). Here there are two separated&nbsp;folders with the&nbsp;data for the phase diagram of a parametric oscillator and a periodically driven Bardeen-Cooper-Schrieffer system. The data for the representative dynamics and Fourier Transforms outside and inside Arnold&#39;s tongues can be found in the files &quot;DynamicsandFT_outsidetheArnoldtongues.zip&quot; and &quot;DynamicsandFT_insidetheArnoldtongues.zip&quot; respectively. We have also included all the necessary data to reproduce the figures shown in the Supplemental Material in the files &quot;robustness_timecrystal_and_timequasicrystal.zip&quot;, &quot;Floquetspectrum_timecrystalregime.zip&quot; and &quot;phasediagram_differenttimewindows.zip&quot;. For all the .txt files inside the .zip files, we have added at the top of each column a brief description of the data recorded below. Some abbreviations have been used and&nbsp;read&nbsp;as follows: &quot;wd&quot; means drive frequency, &quot;Delta&quot; indicates the superconducting order parameter, and &quot;\xi_k&quot; means the quasiparticle energy.</p> <p>&nbsp;</p>

opencc-by-4.0Apr 2022View details →
zenodo36/100

AC Josephson effect between two superfluid time crystals

<p>Dataset for the manuscript titled &quot;AC Josephson effect between two superfluid time crystals&quot; by the same authors.</p>

opencc-by-4.0Jul 2020View details →
zenodo36/100

Data for "Observation of a continuous time crystal"

<p>This upload includes data shown in the main text and the supplementary material of the paper &quot;Observation of a continuous time crystal&quot;</p>

opencc-by-4.0May 2022View details →
zenodo36/100

Critical prethermal discrete time crystal created by two-frequency driving

<p>We report the observation of long-lived Floquet prethermal discrete time crystalline (PDTC) order in a three-dimensional position-disordered lattice of interacting dipolar-coupled 13C nuclei in diamond at room temperature. We demonstrate a novel strategy of &quot;two-frequency&quot; driving, involving an interleaved application of slow and fast drives that simultaneously prethermalize the spins with an emergent quasi-conserved magnetization along the x-axis, while enabling continuous and highly resolved observation of their dynamic evolution when periodically kicked away from x. The PDTC order manifests itself in a robust period doubling response of this drive-induced quasi-conserved spin magnetization interchanging between x and -x; our experiments allow a unique means to study the formation and melting of PDTC order. This dataset contains the raw data for the main text of the&nbsp;paper &quot;Critical prethermal discrete time crystal created by two-frequency driving&quot; found at&nbsp;<em>arXiv</em>:2201.02162,&nbsp;DOI:&nbsp;https://arxiv.org/abs/2201.02162. The authors encourage anyone to&nbsp;reach out&nbsp;with any questions or further help interpreting our results.</p>

opencc-by-4.0Nov 2022View details →
edi36/100

North Temperate Lakes site, station Bog 27-2 (Crystal Bog), study of time in a year that a body of water is free of ice in units of days on a yearly timescale

The EcoTrends project was established in 2004 by Dr. Debra Peters (Jornada Basin LTER, USDA-ARS Jornada Experimental Range) and Dr. Ariel Lugo (Luquillo LTER, USDA-FS Luquillo Experimental Forest) to support the collection and analysis of long-term ecological datasets. The project is a large synthesis effort focused on improving the accessibility and use of long-term data. At present, there are ~50 state and federally funded research sites that are participating and contributing to the EcoTrends project, including all 26 Long-Term Ecological Research (LTER) sites and sites funded by the USDA Agriculture Research Service (ARS), USDA Forest Service, US Department of Energy, US Geological Survey (USGS) and numerous universities. Data from the EcoTrends project are available through an exploratory web portal (http://www.ecotrends.info). This web portal enables the continuation of data compilation and accessibility by users through an interactive web application. Ongoing data compilation is updated through both manual and automatic processing as part of the LTER Provenance Aware Synthesis Tracking Architecture (PASTA). The web portal is a collaboration between the Jornada LTER and the LTER Network Office. The following dataset from North Temperate Lakes (NTL) contains time in a year that a body of water is free of ice measurements in days units and were aggregated to a yearly timescale.

openOpenJan 2020View details →
edi36/100

North Temperate Lakes site, station Crystal Lake, study of time in a year that a body of water is free of ice in units of days on a yearly timescale

The EcoTrends project was established in 2004 by Dr. Debra Peters (Jornada Basin LTER, USDA-ARS Jornada Experimental Range) and Dr. Ariel Lugo (Luquillo LTER, USDA-FS Luquillo Experimental Forest) to support the collection and analysis of long-term ecological datasets. The project is a large synthesis effort focused on improving the accessibility and use of long-term data. At present, there are ~50 state and federally funded research sites that are participating and contributing to the EcoTrends project, including all 26 Long-Term Ecological Research (LTER) sites and sites funded by the USDA Agriculture Research Service (ARS), USDA Forest Service, US Department of Energy, US Geological Survey (USGS) and numerous universities. Data from the EcoTrends project are available through an exploratory web portal (http://www.ecotrends.info). This web portal enables the continuation of data compilation and accessibility by users through an interactive web application. Ongoing data compilation is updated through both manual and automatic processing as part of the LTER Provenance Aware Synthesis Tracking Architecture (PASTA). The web portal is a collaboration between the Jornada LTER and the LTER Network Office. The following dataset from North Temperate Lakes (NTL) contains time in a year that a body of water is free of ice measurements in days units and were aggregated to a yearly timescale.

openOpenJan 2020View details →
zenodo32/100

Data and plotting code for 'Many-body-localized discrete time crystal with a programmable spin-based quantum simulator'

<p>Underlying data and plotting for the publication: &quot;Many-body-localized discrete time crystal with a programmable spin-based quantum simulator&quot;, J. Randall et al., 2021.</p> <p>This directory contains:</p> <p>- &ldquo;Data_analysis.ipynb&rdquo;: The master Jupyter notebook from which all plots produced in the main text and supplementary materials can be reproduced.<br> - &ldquo;Data.zip&rdquo;: A zipped folder containing the json files as loaded within &ldquo;Data_analysis.ipynb&rdquo;. These files contain the underlying x, y, and, where appropriate, y error values for each corresponding plot.</p> <p>The notebook should be executed using python3.</p>

opencc-by-4.0Nov 2021View details →
zenodo32/100

Figure data for Prolonging a discrete time crystal by quantum-classical feedback

<p>The dataset corresponds to the original work developed by the authors.</p>

opencc-by-4.0Sep 2023View details →
zenodo32/100

Higher-order and fractional discrete time crystals in Floquet-driven Rydberg atoms

<div>These folders contain data used to reproduce figures in main text.</div> <div>&nbsp;</div> <div>The file "fig2b.xlsx" contains the phase diagram in Figure 2 of the main text. The columns of fig2b.xlsx represent the detuning and the rows represent the frequencies of the Fourier spectrum. The values in the table represent transimission.</div> <div>&nbsp;</div> <div>The files "fig3a.xlsx" and "fig3c.xlsx" contain the phase diagrams in Figure 3 of the main text. The columns of fig3a.xlsx and fig3c.xlsx represent the detuning and the rows represent the frequencies of the Fourier spectrum. The values in the table represent transimission.</div> <div>&nbsp;</div> <div>The file "fig4a2.xlsx" contains the phase diagram in Figure 4 of the main text. The columns of fig4a2.xlsx represent represent the detuning and the rows represent the frequencies of the Fourier spectrum. The values in the table represent transimission.</div> <div>&nbsp;</div> <div>The files "fig5a.xlsx", "fig5b.xlsx" and "fig5c.xlsx" contain the phase diagrams in Figure 5 of the main text. The columns in fig5a.xlsx, fig5b.xlsx and fig5c.xlsx represent represent the detuning and the rows represent the frequencies of the Fourier spectrum. The values in the table represent transimission.</div> <div>&nbsp;</div> <div>The files "fig8a.xlsx" and "fig8b.xlsx" contain the phase diagrams in Figure 8 of the main text. The columns in fig8a.xlsx and fig8b.xlsx represent the voltages of the RF-field, and the rows represent the detuning. The values in the table represent transimission.</div> <div>&nbsp;</div> <div>The files "fig9b.xlsx" and "fig9d.xlsx" contain the phase diagrams in Figure 9 of the main text. The columns in fig9b.xlsx represent the frequency of the RF-field, and the rows represent the frequencies of the Fourier spectrum. The columns in fig9d.xlsx represent the voltages of the RF-field, and the rows represent the frequencies of the Fourier spectrum. The values in the table represent transimission.</div>

opencc-by-4.0Aug 2024View details →
zenodo32/100

An active colloidal system showing parallels to a time crystal

<p>Supplementary data for the following manuscript: Marina Evers, Raphael Wittkowski, &quot;An active colloidal system showing parallels to a time crystal&quot;, Physica Scripta.</p>

opencc-by-4.0Oct 2023View details →
zenodo28/100

Relaxation times of the modes for liquid crystal dimer CBO3O.Py

Open the record for dataset details and reuse information.

opencc-by-4.0Aug 2024View details →
zenodo24/100

Bifurcation of time crystals in driven and dissipative Rydberg atomic gas

<div>These folders contain data used to reproduce figures in main text.</div> <div>&nbsp;</div> <div>The files "fig2a.xlsx" and "fig2d.xlsx" contain the phase diagrams in Figure 2 of the main text. The columns in fig2a.xlsx represent the voltage of the RF-field, and the rows represent the detuning. The columns in fig2d.xlsx represent the frequency of the RF field, and the rows represent the detuning. The values in the table represent transimission.</div> <div>&nbsp;</div> <div>The file "fig3a.xlsx" contains the phase diagram in Figure 3 of the main text. The columns of fig3a.xlsx represent the detuning and the rows represent the frequencies of the Fourier spectrum. The values in the table represent transimission.</div> <div>&nbsp;</div> <div>The file "fig4a.xlsx" contains the phase diagram in Figure 4 of the main text. The columns of fig4a.xlsx represent the voltage of the RF-field, and the rows represent the frequencies of the Fourier spectrum. The values in the table represent transimission.</div> <div>&nbsp;</div> <div>The files "fig5a.xlsx" and "fig5a.2.xlsx" contain the phase diagrams in Figure 5 of the main text. The columns in fig5a.xlsx and fig5a.2.xlsx represent the voltages of the RF-field, and the rows represent the frequencies of the Fourier spectrum. The values in the table represent transimission.</div> <div>&nbsp;</div> <div>The files "fig7a.xlsx" and "fig7c.xlsx" contain the phase diagrams in Figure 7 of the main text. The columns in fig7a.xlsx and fig7c.xlsx represent the voltages of the RF-field, and the rows represent the frequencies of the Fourier spectrum. The values in the table represent transimission.</div>

opencc-by-4.0Aug 2024View details →

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