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•The laser always irradiates the sample vertically to obtain a Raman image without distortion •Accurate image information also obtained when using 3-D imaging •A wide area sample measurement using only laser scanning (50 µm x 50 µm using a 100X objective lens) Laser Objective lens Sample VertiScan’ Laser Scanning VertiScan’ Laser Scanning

The laser always irradiates the sample vertically to obtain a Raman image without distortion Accurate image information also obtained when using 3-D imaging

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Page 1: The laser always irradiates the sample vertically to obtain a Raman image without distortion Accurate image information also obtained when using 3-D imaging

•The laser always irradiates the sample vertically to obtain a Raman image without distortion

•Accurate image information also obtained when using 3-D imaging

•A wide area sample measurement using only laser scanning (50 µm x 50 µm using a 100X objective lens)

Laser

Objective lens

Sample

‘‘VertiScan’ Laser ScanningVertiScan’ Laser Scanning

Page 2: The laser always irradiates the sample vertically to obtain a Raman image without distortion Accurate image information also obtained when using 3-D imaging

VertiScan Conventional Laser scan

‘‘VertiScan’ Laser ScanningVertiScan’ Laser Scanning

Page 3: The laser always irradiates the sample vertically to obtain a Raman image without distortion Accurate image information also obtained when using 3-D imaging

Sample Raman image

VertiScan

Laser spot shape

Laser

Objective lens

Sample Sample

Consistently complete circle

No distortion, wide range Raman imaging

Conventional Laser scan

Objective lens

Sample area far from the center of the objective lens is irradiated from an ‘oblique’ laser beam. A measurement point of the internal sample can be greatly distorted.

Spot far from center is ellipsoidal with low spatial resolution

Distorted Raman imaging for outside sample positions, distortion-free imaging in center of sample

Laser spot shape

Sample Raman image

Laser always irradiates the sample vertically

Page 4: The laser always irradiates the sample vertically to obtain a Raman image without distortion Accurate image information also obtained when using 3-D imaging

SPRIntS High Speed ImagingSPRIntS High Speed Imaging

Peak height at 520 cm-1

Page 5: The laser always irradiates the sample vertically to obtain a Raman image without distortion Accurate image information also obtained when using 3-D imaging

Polymer Laminate – Cross Section Polymer Laminate – Cross Section Spectral Images Spectral Images

Polyvinyl acetate – 1297 cm-1

Polyethylene – 849 cm-1

Nylon/Polyamide – 1639 cm-1

Page 6: The laser always irradiates the sample vertically to obtain a Raman image without distortion Accurate image information also obtained when using 3-D imaging

Polymer Laminate – Image Overlay Polymer Laminate – Image Overlay

Page 7: The laser always irradiates the sample vertically to obtain a Raman image without distortion Accurate image information also obtained when using 3-D imaging

Polymer Laminate – 3-D Image Polymer Laminate – 3-D Image (1639 cm(1639 cm-1-1))

Page 8: The laser always irradiates the sample vertically to obtain a Raman image without distortion Accurate image information also obtained when using 3-D imaging

Polymer Laminate – 3-D Image Polymer Laminate – 3-D Image (1639 cm(1639 cm-1-1))

Page 9: The laser always irradiates the sample vertically to obtain a Raman image without distortion Accurate image information also obtained when using 3-D imaging

Polymer Laminate – 3-D Image (1077 cmPolymer Laminate – 3-D Image (1077 cm-1-1) )

Page 10: The laser always irradiates the sample vertically to obtain a Raman image without distortion Accurate image information also obtained when using 3-D imaging

Polymer Laminate – 3-D Composite ImagePolymer Laminate – 3-D Composite Image

Page 11: The laser always irradiates the sample vertically to obtain a Raman image without distortion Accurate image information also obtained when using 3-D imaging

Polyvinyl alcohol

Polyethylene

Nylon/Polyamide

Polymer Laminate – Cross Section Polymer Laminate – Cross Section Analysis Analysis

Page 12: The laser always irradiates the sample vertically to obtain a Raman image without distortion Accurate image information also obtained when using 3-D imaging

Polymer Laminate – 3-D Image Polymer Laminate – 3-D Image (1608 cm(1608 cm-1-1))

Page 13: The laser always irradiates the sample vertically to obtain a Raman image without distortion Accurate image information also obtained when using 3-D imaging

Polymer Laminate – 3-D Image (1626 cmPolymer Laminate – 3-D Image (1626 cm-1-1) )

Page 14: The laser always irradiates the sample vertically to obtain a Raman image without distortion Accurate image information also obtained when using 3-D imaging

Polymer Laminate – 3-D Image (868 cmPolymer Laminate – 3-D Image (868 cm-1-1) )

Page 15: The laser always irradiates the sample vertically to obtain a Raman image without distortion Accurate image information also obtained when using 3-D imaging

Polymer Laminate – 3-D Composite ImagePolymer Laminate – 3-D Composite Image

Page 16: The laser always irradiates the sample vertically to obtain a Raman image without distortion Accurate image information also obtained when using 3-D imaging

Acknowledgements Acknowledgements

• John Carriker – Jasco, Inc.

• Yoshiko Kubo, Ken-ichi Akao, Masaaki Yumoto, Toshiyuki Nagoshi – Jasco Corporation