| | 47 | |
| | 48 | == Data format == |
| | 49 | |
| | 50 | === Transmission/Reflection === |
| | 51 | |
| | 52 | A typical transmission/reflection spectrum looks like |
| | 53 | {{{ |
| | 54 | 800 92.4132 0.131976 |
| | 55 | 799 92.446 0.118017 |
| | 56 | 798 92.3688 0.09428 |
| | 57 | }}} |
| | 58 | |
| | 59 | It means |
| | 60 | || wavelength(nm) || transmission/reflection mean value (%) || RMS (%) || |
| | 61 | |
| | 62 | |
| | 63 | RMS is taken by the average of the value to repeat scanning spectrum three times, |
| | 64 | then rotate the sample ~90 degree, and finally repeat scanning spectrum three times, again. |
| | 65 | |
| | 66 | If no extra explanation, the optical spectrum of transmission/reflection follows this format. |
| | 67 | For example, |
| | 68 | source:IAV/material/optical/T-B112-1.dat |
| | 69 | |
| | 70 | === Attenuation Length === |
| | 71 | |
| | 72 | || || || |
| | 73 | |
| | 74 | === Index of Refraction === |
| | 75 | |
| | 76 | |
| | 77 | == Sample Summary == |
| | 78 | |
| | 79 | || Sample || Thickness || Manufacturer || Used for || Note || |
| | 80 | || B111 || 10.14 || Liang-Mei || IAV1/2 || || |
| | 81 | || B112 || 10.113 || Liang-Mei || IAV1/2 || || |
| | 82 | || L111 || 15.150 || Liang-Mei || IAV1/2 || || |
| | 83 | |
| | 84 | == File Summary == |
| | 85 | |
| | 86 | || File || Collection Data || Note || |
| | 87 | || T-B111-1.dat || 20090215 || only 3 times average of an orientation. No rotation of the sample || |
| | 88 | || T-B112-1.dat || 20090719 || || |
| | 89 | || T-L111-1.dat || 20090719 || || |
| | 90 | || R-B112-1.dat || 20090718 || || |
| | 91 | || R-L111-1.dat || 20090718 || || |
| | 92 | || D-B112-1.dat || 20090718 || || |
| | 93 | || D-L111-1.dat || 20090718 || || |
| | 94 | || || || || |
| | 95 | || || || || |
| | 96 | || || || || |
| | 97 | || || || || |
| | 98 | || || || || |
| | 99 | || || || || |
| | 100 | |