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2
-
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0002752414
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Differential absorption lidar (DIAL)
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M. Sigrist, ed. (Wiley, New York
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S. Svanberg, “Differential absorption lidar (DIAL),” in Air Monitoring by Spectroscopic Techniques, M. Sigrist, ed. (Wiley, New York, 1994).
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(1994)
Air Monitoring by Spectroscopic Techniques
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-
Svanberg, S.1
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3
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0029517761
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DIAL measurements for air pollution and fugative-loss monitoring
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R. A. Robinson, P. T. Woods, and M. J. T. Milton, “DIAL measurements for air pollution and fugative-loss monitoring,” in Air Pollution and Visibility Measurements, Proc. SPIE 2506, 140-149 (1995).
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(1995)
Air Pollution and Visibility Measurements, Proc. SPIE
, vol.2506
, pp. 140-149
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Robinson, R.A.1
Woods, P.T.2
Milton, M.J.T.3
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4
-
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0032100775
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A combined determination of wind velocities and ozone concentrations for a first measurement of ozone fluxes with a DIAL instrument during the MEDCAPHOT-TRACE campaign
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L. Fiorani, B. Calpini, L. Jaquet, H. van den Bergh, and E. Durieux, “A combined determination of wind velocities and ozone concentrations for a first measurement of ozone fluxes with a DIAL instrument during the MEDCAPHOT-TRACE campaign,” Atmos. Environ. 32, 2151-2159 (1998).
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(1998)
Atmos. Environ.
, vol.32
, pp. 2151-2159
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Fiorani, L.1
Calpini, B.2
Jaquet, L.3
Van Den Bergh, H.4
Durieux, E.5
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5
-
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0010307266
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Airborne laser-induced oceanic chlorophyll fluorescence: Solar-induced quenching corrections by use of concurrent downwelling irradiance measurements
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F. E. Hoge, C. W. Wright, R. N. Swift, and J. K. Yungel, “Airborne laser-induced oceanic chlorophyll fluorescence: solar-induced quenching corrections by use of concurrent downwelling irradiance measurements,” Appl. Opt. 87, 3222-3226 (1998).
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(1998)
Appl. Opt.
, vol.87
, pp. 3222-3226
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Hoge, F.E.1
Wright, C.W.2
Swift, R.N.3
Yungel, J.K.4
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6
-
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85010106072
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Comparison between satellite and laser remote sensing of the Southern Ocean
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L. Fiorani, R. Barbini, F. Colao, R. Fantoni, and R. Palucci, “Comparison between satellite and laser remote sensing of the Southern Ocean,” J. Comput. Technol. 7, 110-120 (2002).
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(2002)
J. Comput. Technol.
, vol.7
, pp. 110-120
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Fiorani, L.1
Barbini, R.2
Colao, F.3
Fantoni, R.4
Palucci, R.5
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7
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0037577828
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Fluorescence lidar monitoring of vegetation status
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S. Svanberg, “Fluorescence lidar monitoring of vegetation status,” Phys. Scr. T58, 79-85 (1995).
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(1995)
Phys. Scr.
, vol.T58
, pp. 79-85
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Svanberg, S.1
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8
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0032549168
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Fluorescence lidar monitoring of historical buildings
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V. Raimondi, G. Cecchi, L. Pantani, and R. Chiari, “Fluorescence lidar monitoring of historical buildings,” Appl. Opt. 37, 1089-1098 (1998).
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(1998)
Appl. Opt.
, vol.37
, pp. 1089-1098
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Raimondi, V.1
Cecchi, G.2
Pantani, L.3
Chiari, R.4
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9
-
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0038159683
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Fluorescence lidar imaging of historical monuments
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P. Weibring, Th. Johansson, H. Edner, S. Svanberg, B. Sund-ner, V. Raimondi, G. Cecchi, and L. Pantani, “Fluorescence lidar imaging of historical monuments,” Appl. Opt. 40, 6111-6120 (2001).
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(2001)
Appl. Opt.
, vol.40
, pp. 6111-6120
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Weibring, P.1
Johansson, T.H.2
Edner, H.3
Svanberg, S.4
Sund-Ner, B.5
Raimondi, V.6
Cecchi, G.7
Pantani, L.8
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10
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0019769323
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Mobile lidar system for environmental probing
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K. Fredriksson, B. Galle, K. Nystrom, and S. Svanberg, “Mobile lidar system for environmental probing,” Appl. Opt. 20, 4181-4185 (1981).
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(1981)
Appl. Opt.
, vol.20
, pp. 4181-4185
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Fredriksson, K.1
Galle, B.2
Nystrom, K.3
Svanberg, S.4
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11
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0001584197
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Mobile remote sensing system for atmospheric monitoring
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H. Edner, K. Fredriksson, A. Sunesson, S. Svanberg, L. Une us, and W. Wendt, “Mobile remote sensing system for atmospheric monitoring,” Appl. Opt. 26, 4330-4338 (1987).
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(1987)
Appl. Opt.
, vol.26
, pp. 4330-4338
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Edner, H.1
Fredriksson, K.2
Sunesson, A.3
Svanberg, S.4
Une Us, L.5
Wendt, W.6
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12
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85010094800
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Development and testing of a frequency-agile optical parametric oscillator system for differential absorption lidar
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submitted for publication
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P. Weibring, J. N. Smith, H. Edner, and S. Svanberg, “Development and testing of a frequency-agile optical parametric oscillator system for differential absorption lidar,” Rev. Sci. Instrum., submitted for publication.
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Rev. Sci. Instrum
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Weibring, P.1
Smith, J.N.2
Edner, H.3
Svanberg, S.4
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13
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84893878948
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Development and construction of an automatic calibration unit for a differential absorption lidar system
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Lund Institute of Technology, Lund, Sweden
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F. Mellegard, “Development and construction of an automatic calibration unit for a differential absorption lidar system,” diploma paper, Lund Reports on Atomic Physics, LRAP 264 (Lund Institute of Technology, Lund, Sweden, 2000).
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(2000)
Diploma Paper, Lund Reports on Atomic Physics, LRAP
, vol.264
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Mellegard, F.1
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14
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0028441129
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Fluorescence lidar multicolor imaging of vegetation
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H. Edner, J. Johansson, S. Svanberg, and E. Wallinder, “Fluorescence lidar multicolor imaging of vegetation,” Appl. Opt. 33, 2471-2479 (1994).
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(1994)
Appl. Opt.
, vol.33
, pp. 2471-2479
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Edner, H.1
Johansson, J.2
Svanberg, S.3
Wallinder, E.4
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15
-
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84893881229
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Probing the marine environment with fluorescence lidars— comparison of three fluorosensors in a field campaign
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Consiglio Nazionale delle Ricerche, Rome, Italy
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I. Mochi, G. Cecchi, L. Pantani, Th. Johansson, P. Weibring, H. Edner, and S. Svanberg, “Probing the marine environment with fluorescence lidars— comparison of three fluorosensors in a field campaign,” CNR Scientific Report RR/OST/01.03 (Consiglio Nazionale delle Ricerche, Rome, Italy, 2003).
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(2003)
CNR Scientific Report RR/OST/01
, vol.3
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Mochi, I.1
Cecchi, G.2
Pantani, L.3
Johansson, T.H.4
Weibring, P.5
Edner, H.6
Svanberg, S.7
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16
-
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0028668971
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Determining the power-law wind-profile exponent under near-stability conditions at sea
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S. A. Hsu, E. A. Meindl, and G. B. Gilhousen, “Determining the power-law wind-profile exponent under near-stability conditions at sea,” Appl. Metrol. 33, 757-765 (1994).
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(1994)
Appl. Metrol.
, vol.33
, pp. 757-765
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Hsu, S.A.1
Meindl, E.A.2
Gilhousen, G.B.3
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17
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0032027570
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Remote monitoring of industrial emissions by combination of lidar and plume velocity measurements
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P. Weibring, M. Andersson, H. Edner, and S. Svanberg, “Remote monitoring of industrial emissions by combination of lidar and plume velocity measurements,” Appl. Phys. B 66, 383-388 (1998).
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(1998)
Appl. Phys. B
, vol.66
, pp. 383-388
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Weibring, P.1
Andersson, M.2
Edner, H.3
Svanberg, S.4
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18
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85010126536
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are preparing a manuscript titled “Multicomponent chemical analysis of gas mixtures using a continuously-tuneable lidar system
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P. Weibring, Ch. Abrahamsson, M. Sjoholm, J. N. Smith, H. Edner, and S. Svanberg are preparing a manuscript titled “Multicomponent chemical analysis of gas mixtures using a continuously-tuneable lidar system.
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-
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Weibring, P.1
Abrahamsson, C.H.2
Sjoholm, M.3
Smith, J.N.4
Edner, H.5
Svanberg, S.6
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21
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0030333180
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Genetic algorithm-based method for selecting wavelength and model size for use with partial least-squares regression: Application to near-infrared spectroscopy
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A. S. Bangalore, R. A. Schaffer, G. W. Small, and M. A. Arnold, “Genetic algorithm-based method for selecting wavelength and model size for use with partial least-squares regression: Application to near-infrared spectroscopy,” Anal. Chem. 68, 4200-4212 (1996).
-
(1996)
Anal. Chem.
, vol.68
, pp. 4200-4212
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-
Bangalore, A.S.1
Schaffer, R.A.2
Small, G.W.3
Arnold, M.A.4
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22
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0036477628
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Analysis of lidar measurements using nonparametric kernel regression methods
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T. Lindstrom, U. Holst, P. Weibring, and H. Edner, “Analysis of lidar measurements using nonparametric kernel regression methods,” Appl. Phys. B 74, 155-165 (2002).
-
(2002)
Appl. Phys. B
, vol.74
, pp. 155-165
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-
Lindstrom, T.1
Holst, U.2
Weibring, P.3
Edner, H.4
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23
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84975565172
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Atmospheric atomic mercury monitoring using differential absorption lidar techniques
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H. Edner, G. W. Faris, A. Sunesson, and S. Svanberg, “Atmospheric atomic mercury monitoring using differential absorption lidar techniques,” Appl. Opt. 28, 921-930 (1989).
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(1989)
Appl. Opt.
, vol.28
, pp. 921-930
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Edner, H.1
Faris, G.W.2
Sunesson, A.3
Svanberg, S.4
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24
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0026445168
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Differential absorption lidar mapping of atmospheric atomic mercury in Italian geothermal fields
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H. Edner, P. Ragnarson, S. Svanberg, E. Wallinder, A. de Liso, R. Ferrara, and B. E. Maserti, “Differential absorption lidar mapping of atmospheric atomic mercury in Italian geothermal fields,” J. Geophys. Res. 97, 3779-3786 (1992).
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(1992)
J. Geophys. Res.
, vol.97
, pp. 3779-3786
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Edner, H.1
Ragnarson, P.2
Svanberg, S.3
Wallinder, E.4
De Liso, A.5
Ferrara, R.6
Maserti, B.E.7
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25
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84893885085
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Mercury emissions from a chlor-alkali plant in Sweden
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to be published
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I. Wangberg, H. Edner, R. Ferrara, E. Zanzillotta, J. Munthe, J. Sommar, S. Svanberg, M. Sjoholm, and P. Weibring, “Mercury emissions from a chlor-alkali plant in Sweden,” Science Total Environ. (to be published).
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Science Total Environ.
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Wangberg, I.1
Edner, H.2
Ferrara, R.3
Zanzillotta, E.4
Munthe, J.5
Sommar, J.6
Svanberg, S.7
Sjoholm, M.8
Weibring, P.9
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26
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0036466890
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Optical monitoring of volcanic sulfur dioxide emissions—comparison between four different remote-sensing spectroscopic techniques
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P. Weibring, J. Swartling, H. Edner, S. Svanberg, T. Caltabi-ano, D. Condarelli, G. Cecchi, and L. Pantani, “Optical monitoring of volcanic sulfur dioxide emissions—comparison between four different remote-sensing spectroscopic techniques,” Optics Lasers Eng. 37, 267-284 (2002).
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(2002)
Optics Lasers Eng
, vol.37
, pp. 267-284
-
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Weibring, P.1
Swartling, J.2
Edner, H.3
Svanberg, S.4
Caltabi-Ano, T.5
Condarelli, D.6
Cecchi, G.7
Pantani, L.8
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27
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85010126532
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Fluorescence imaging of the Parma cathedral and baptistery
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to be published
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D. Lognoli, C. Cecchi, L. Pantani, V. Raimondi, R. Chiari, Th. Johansson, P. Weibring, H. Edner, and S. Svanberg, “Fluorescence imaging of the Parma cathedral and baptistery,” Appl. Phys. B (to be published).
-
Appl. Phys. B
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-
Lognoli, D.1
Cecchi, C.2
Pantani, L.3
Raimondi, V.4
Chiari, R.5
Johansson, T.H.6
Weibring, P.7
Edner, H.8
Svanberg, S.9
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28
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0037780845
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-
Ph. D. dissertation, Lund Reports on Atomic Physics, LRAP-284 (Lund Institute of Technology, Lund, Sweden
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P. Weibring, “Environmental monitoring by multi-spectral li-dar techniques,” Ph. D. dissertation, Lund Reports on Atomic Physics, LRAP-284 (Lund Institute of Technology, Lund, Sweden, 2002).
-
(2002)
Environmental Monitoring by Multi-Spectral Li-Dar Techniques
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Weibring, P.1
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