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73 results for “LCROSS”

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zenodo40/100

PCA Filtering of Magdalena Ridge Observatory 2.4m PHOTDOC Observations of LCROSS

<p>This archive contains data products from observations of the 2009-10-09 impact of the Lunar CRater Observation and Sensing Satellite (LCROSS) spacecraft on the Moon by the PHOTDOC instrument on the Magdalena Ridge Observatory 2.4m telescope. We use principal component analysis (PCA) filtering both to coregister the raw time series and to effectively remove a static background signal that is spatially and temporally modified by atmospheric and instrumental effects. We iteratively remove principal components from the data through cumulative sequential elimination (CSE) to find a maximum signal-to-noise ratio of the LCROSS ejecta plume signal.</p> <p>Full details are available in the published journal article:</p> <p>Strycker, Paul D., Nancy J. Chanover, Ruth L. Temme, Jonathan M. Schotte, Payton L. Mueller, and Emily L. Karls. 2023. &quot;Time Series Analysis Methods and Detectability Factors for Ground-Based Imaging of the LCROSS Impact Plume&quot;&nbsp;<em>Remote Sensing</em>&nbsp;<strong>15</strong>, no. 1: 37. <a href="https://doi.org/10.3390/rs15010037">https://doi.org/10.3390/rs15010037</a></p> <p>This work was supported by NASA&rsquo;s Lunar Data Analysis Program through grant number NNX15AP92G.</p>

opencc-by-4.0Nov 2022View details →
zenodo40/100

PCA Filtering of Magdalena Ridge Observatory 2.4m PHOTGJON Observations of LCROSS

<p>This archive contains data products from observations of the 2009-10-09 impact of the Lunar CRater Observation and Sensing Satellite (LCROSS) spacecraft on the Moon by the PHOTGJON instrument on the Magdalena Ridge Observatory 2.4m telescope. We use principal component analysis (PCA) filtering both to coregister the raw time series and to effectively remove a static background signal that is spatially and temporally modified by atmospheric and instrumental effects. We iteratively remove principal components from the data through cumulative sequential elimination (CSE) to find a maximum signal-to-noise ratio of the LCROSS ejecta plume signal.</p> <p>Full details are available in the published journal article:</p> <p>Strycker, Paul D., Nancy J. Chanover, Ruth L. Temme, Jonathan M. Schotte, Payton L. Mueller, and Emily L. Karls. 2023. &quot;Time Series Analysis Methods and Detectability Factors for Ground-Based Imaging of the LCROSS Impact Plume&quot;&nbsp;<em>Remote Sensing</em>&nbsp;<strong>15</strong>, no. 1: 37. <a href="https://doi.org/10.3390/rs15010037">https://doi.org/10.3390/rs15010037</a></p> <p>This work was supported by NASA&rsquo;s Lunar Data Analysis Program through grant number NNX15AP92G.</p>

opencc-by-4.0Nov 2022View details →
zenodo40/100

Raw Data and PCA Filtering of Apache Point Observatory NMSU 1m StellaCam Observations of LCROSS

<p>This archive contains the raw data and data products from observations of the 2009-10-09 impact of the Lunar CRater Observation and Sensing Satellite (LCROSS) spacecraft on the Moon by the StellaCam instrument on the Apache Point Observatory NMSU 1m telescope.</p> <p>Full details about the raw data are available in Chanover, N. J. et al. Results from the NMSU-NASA Marshall Space Flight Center LCROSS observational campaign. <em>J. Geophys. Res. (Planets)</em> <strong>116</strong>, E08003 (2011). <a href="https://doi.org/10.1029/2010JE003761">https://doi.org/10.1029/2010JE003761</a></p> <p>We use principal component analysis (PCA) filtering both to coregister the raw time series and to effectively remove a static background signal that is spatially and temporally modified by atmospheric and instrumental effects. We iteratively remove principal components from the data through cumulative sequential elimination (CSE) resulting in a non-detection of the LCROSS ejecta plume signal.</p> <p>Full details are available in the published journal article:</p> <p>Strycker, Paul D., Nancy J. Chanover, Ruth L. Temme, Jonathan M. Schotte, Payton L. Mueller, and Emily L. Karls. 2023. &quot;Time Series Analysis Methods and Detectability Factors for Ground-Based Imaging of the LCROSS Impact Plume&quot;&nbsp;<em>Remote Sensing</em>&nbsp;<strong>15</strong>, no. 1: 37. <a href="https://doi.org/10.3390/rs15010037">https://doi.org/10.3390/rs15010037</a></p> <p>This work was supported by NASA&rsquo;s Lunar Data Analysis Program through grant number NNX15AP92G.</p>

opencc-by-4.0Nov 2022View details →
zenodo40/100

PCA Filtering of Apache Point Observatory 3.5m Agile Observations of LCROSS

<p>This archive contains data products from observations of the 2009-10-09 impact of the Lunar CRater Observation and Sensing Satellite (LCROSS) spacecraft on the Moon by the Agile instrument on the Apache Point Observatory 3.5m telescope. We use principal component analysis (PCA) filtering both to improve the coregistration of the raw time series and to effectively remove a static background signal that is spatially and temporally modified by atmospheric and instrumental effects. We iteratively remove principal components from the data through cumulative sequential elimination (CSE) to find a maximum signal-to-noise ratio of the LCROSS ejecta plume signal.</p> <p>Full details are available in the published journal article:</p> <p>Strycker, Paul D., Nancy J. Chanover, Ruth L. Temme, Jonathan M. Schotte, Payton L. Mueller, and Emily L. Karls. 2023. &quot;Time Series Analysis Methods and Detectability Factors for Ground-Based Imaging of the LCROSS Impact Plume&quot;&nbsp;<em>Remote Sensing</em>&nbsp;<strong>15</strong>, no. 1: 37. <a href="https://doi.org/10.3390/rs15010037">https://doi.org/10.3390/rs15010037</a></p> <p>This work was supported by NASA&rsquo;s Lunar Data Analysis Program through grant number NNX15AP92G.</p>

opencc-by-4.0Nov 2022View details →
zenodo40/100

PCA Filtering of MMT Observatory 6.5m CCD47 Observations of LCROSS

<p>This archive contains data products from observations of the 2009-10-09 impact of the Lunar CRater Observation and Sensing Satellite (LCROSS) spacecraft on the Moon by the CCD47 instrument on the MMT Observatory 6.5m telescope. We use principal component analysis (PCA) filtering both to coregister the raw time series and to effectively remove a static background signal that is spatially and temporally modified by atmospheric and instrumental effects. We iteratively remove principal components from the data through cumulative sequential elimination (CSE) resulting in a non-detection of the LCROSS ejecta plume signal.</p> <p>Full details are available in the published journal article:</p> <p>Strycker, Paul D., Nancy J. Chanover, Ruth L. Temme, Jonathan M. Schotte, Payton L. Mueller, and Emily L. Karls. 2023. &quot;Time Series Analysis Methods and Detectability Factors for Ground-Based Imaging of the LCROSS Impact Plume&quot;&nbsp;<em>Remote Sensing</em>&nbsp;<strong>15</strong>, no. 1: 37. <a href="https://doi.org/10.3390/rs15010037">https://doi.org/10.3390/rs15010037</a></p> <p>This work was supported by NASA&rsquo;s Lunar Data Analysis Program through grant number NNX15AP92G.</p>

opencc-by-4.0Nov 2022View details →
zenodo28/100

MiniRF/ShadowCam observations of LCROSS crater

<p>Data archive for LCROSS impact site in MiniRF and ShadowCam</p>

opencc-by-4.0May 2024View details →
zenodo28/100

PCA Filtering of Tortugas Mountain Observatory 0.6m Goodrich Observations of LCROSS

<p>This archive contains the data products from observations of the 2009-10-09 impact of the Lunar CRater Observation and Sensing Satellite (LCROSS) spacecraft on the Moon by the Goodrich instrument on the Tortugas Mountain Observatory 0.6m telescope. We use principal component analysis (PCA) filtering both to coregister the raw time series and to effectively remove a static background signal that is spatially and temporally modified by atmospheric and instrumental effects. We iteratively remove principal components from the data through cumulative sequential elimination (CSE) resulting in a non-detection of the LCROSS ejecta plume signal.</p> <p>Full details are available in the published journal article:</p> <p>Strycker, Paul D., Nancy J. Chanover, Ruth L. Temme, Jonathan M. Schotte, Payton L. Mueller, and Emily L. Karls. 2023. &quot;Time Series Analysis Methods and Detectability Factors for Ground-Based Imaging of the LCROSS Impact Plume&quot;&nbsp;<em>Remote Sensing</em>&nbsp;<strong>15</strong>, no. 1: 37. <a href="https://doi.org/10.3390/rs15010037">https://doi.org/10.3390/rs15010037</a></p> <p>This work was supported by NASA&rsquo;s Lunar Data Analysis Program through grant number NNX15AP92G.</p>

opencc-by-4.0Nov 2022View details →
zenodo28/100

Raw Data of Tortugas Mountain Observatory 0.6m Goodrich Observations of LCROSS

<p>This archive contains the raw data from observations of the 2009-10-09 impact of the Lunar CRater Observation and Sensing Satellite (LCROSS) spacecraft on the Moon by the Goodrich instrument on the Tortugas Mountain Observatory 0.6m telescope. Full details are available in Chanover, N. J. et al. Results from the NMSU-NASA Marshall Space Flight Center LCROSS observational campaign. <em>J. Geophys. Res. (Planets)</em> <strong>116</strong>, E08003 (2011). <a href="https://doi.org/10.1029/2010JE003761">https://doi.org/10.1029/2010JE003761</a></p>

opencc-by-4.0Nov 2022View details →
nasa20/100

LCROSS SUN 2ND NEAR IR SPECTROMETER FLASH 2 RAW V1.0

Raw, uncalibrated flash mode spectra from the Near Infrared Spectrometer 2 (NSP2) aboard the Lunar Crater Observation and Sensing Satellite (LCROSS).

restrictedus-pdMar 2025View details →
nasa20/100

LCROSS MMT Observatory CLIO Raw Data Bundle

This bundle contains contains raw data collected from the MMT Observatory CLIO instrument during observations of the impact of the LCROSS spacecraft on the moon on October 9, 2009. The bundle contains raw data products.

restrictedus-pdApr 2025View details →
nasa20/100

MAGDALENA RIDGE OBSERVATORY 2.4M PHOTDOC LCROSS OBSERVATIONS

This archive contains raw observations of the 2009-10-09 impact of the LCROSS spacecraft on the moon by the PHOTDOC instrument on the Magdalena Ridge Observatory 2.4m telescope. This dataset consists of frame-transfer CCD observations of the LCROSS impact site as well as unresolved images of the primary impactor in the final hours before impact.

restrictedus-pdMar 2025View details →
nasa20/100

LCROSS MOON TOTAL LUMINANCE PHOTOMETER 2 RAW V1.0

Raw, uncalibrated data from the Total Luminance Photometer (TLP) aboard the Lunar Crater Observation and Sensing Satellite (LCROSS).

restrictedus-pdMar 2025View details →
nasa20/100

LCROSS SUN 2ND NEAR IR SPECTROMETER 2 RAW V1.0

Raw, uncalibrated spectra from the Near Infrared Spectrometer 2 (NSP2) aboard the Lunar Crater Observation and Sensing Satellite (LCROSS).

restrictedus-pdMar 2025View details →
nasa20/100

LCROSS SUN 2ND NEAR IR SPECTROMETER 3 CAL V1.0

Calibrated spectra from the Near Infrared Spectrometer 2 (NSP2) aboard the Lunar Crater Observation and Sensing Satellite (LCROSS).

restrictedus-pdMar 2025View details →
nasa20/100

LCROSS SUN 2ND NEAR IR SPECTROMETER 2 PREHAD V1.0

Raw, Uncalibrated, Pre-Hadamard Mask Data from the Near Infrared Spectrometer 2 (NSP2) aboard the Lunar Crater Observation and Sensing Satellite (LCROSS).

restrictedus-pdMar 2025View details →
nasa20/100

MMT OBSERVATORY 6.5M CLIO CALIBRATED OBSERVATIONS OF LCROSS

This archive contains calibrated observations of the 2009-10-09 impact of the LCROSS spacecraft on the moon by the CLIO instrument on the MMT Observatory 6.5m telescope. The archive consists of calibrated FITS images of the event. This is one of several data sets of Earth-based observations of the impact.

restrictedus-pdApr 2025View details →
nasa20/100

LCROSS Magdalena Ridge Observatory 2.4m Telescope PHOTGJON Data Bundle

This bundle contains data collected from the Magdalena Ridge Observatory 2.4m Telescope PHOTGJON instrument during observations of the impact of the LCROSS spacecraft on the moon on October 9, 2009. The bundle contains raw data products.

restrictedus-pdApr 2025View details →
nasa20/100

LCROSS Magdalena Ridge Observatory 2.4m Telescope PHOTDOC Data Bundle

This bundle contains data collected from the Magdalena Ridge Observatory 2.4m Telescope PHOTDOC instrument during observations of the impact of the LCROSS spacecraft on the moon on October 9, 2009. The bundle contains raw data products.

restrictedus-pdApr 2025View details →
nasa20/100

LCROSS EARTH/MOON VISIBLE CAMERA 2 RAW DATA V1.0

Raw, uncalibrated image data from the Visible Camera (VIS) aboard the Lunar Crater Observation and Sensing Satellite (LCROSS).

restrictedus-pdApr 2025View details →
nasa20/100

LCROSS MMT Observatory CLIO Calibrated Data Bundle

This bundle contains contains calibrated data collected from the MMT Observatory CLIO instrument during observations of the impact of the LCROSS spacecraft on the moon on October 9, 2009. The bundle contains raw data products.

restrictedus-pdMar 2025View details →

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