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Infrared detector

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119: 22: 39: 484: 105: 86: 58: 43: 369:"Toward an Accurate IR Remote Sensing of Body Temperature Radiometer Based on a Novel IR Sensing System Dubbed Digital TMOS" 65: 188:
The response time and sensitivity of photonic detectors can be much higher, but usually these have to be cooled to cut
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The thermal effects of the incident IR radiation can be followed through many temperature dependent phenomena.
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Prototype of high-speed infrared detector installed on the PIONIER instrument at
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with narrow band gaps. Incident IR photons can cause electronic excitations. In
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Avraham, M.; Nemirovsky, J.; Blank, T.; Golan, G.; Nemirovsky, Y. (2022).
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with indium bumps. This hybrid is known as a focal plane array.
123: 15: 150:. The two main types of detectors are thermal and photonic ( 420:"Narrwo-Bandgap Materials for Optoelectronics Applications" 212:
on which photoelectric current appears upon illumination.
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An infrared detector is hybridized by connecting it to a
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The materials basis for infrared detection devices are
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Physics and Properties of Narrow Gap Semiconductors
46:. Unsourced material may be challenged and removed. 177:. Golay cells follow thermal expansion. In IR 8: 394: 384: 106:Learn how and when to remove this message 117: 338: 204:of the detector element is monitored. 7: 165:are based on changes in resistance. 44:adding citations to reliable sources 14: 465:Chu, Junhao; Sher, Arden (2008). 20: 31:needs additional citations for 1: 192:. The materials in these are 533: 217:readout integrated circuit 477:10.1007/978-0-387-74801-6 444:10.1007/s11467-021-1055-z 270:Mercury cadmium telluride 229:narrow-gap semiconductors 185:are the most widespread. 287:Indium gallium arsenide 272:(Known as MCT, HgCdTe) 183:pyroelectric detectors 131: 418:Li, Xiao-Hui (2022). 175:thermoelectric effect 121: 424:Frontiers of Physics 208:detectors contain a 40:improve this article 436:2022FrPhy..1713304L 128:Paranal Observatory 55:"Infrared detector" 386:10.3390/mi13050703 308:Triglycine sulfate 223:Detector Materials 132: 314:Platinum silicide 302:Lithium tantalate 276:Indium antimonide 136:infrared detector 116: 115: 108: 90: 524: 517:Infrared imaging 491: 490: 462: 456: 455: 415: 409: 408: 398: 388: 364: 358: 357: 355: 353: 343: 327:Infrared imaging 264:Lead(II) sulfide 111: 104: 100: 97: 91: 89: 48: 24: 16: 532: 531: 527: 526: 525: 523: 522: 521: 497: 496: 495: 494: 487: 464: 463: 459: 417: 416: 412: 366: 365: 361: 351: 349: 345: 344: 340: 335: 323: 282:Indium arsenide 225: 200:detectors, the 198:photoconductive 163:microbolometers 142:that reacts to 112: 101: 95: 92: 49: 47: 37: 25: 12: 11: 5: 530: 528: 520: 519: 514: 509: 499: 498: 493: 492: 485: 457: 410: 359: 337: 336: 334: 331: 330: 329: 322: 319: 318: 317: 311: 305: 299: 294: 289: 284: 279: 273: 267: 224: 221: 194:semiconductors 152:photodetectors 114: 113: 28: 26: 19: 13: 10: 9: 6: 4: 3: 2: 529: 518: 515: 513: 512:Image sensors 510: 508: 505: 504: 502: 488: 486:9780387747439 482: 478: 474: 470: 469: 461: 458: 453: 449: 445: 441: 437: 433: 429: 425: 421: 414: 411: 406: 402: 397: 392: 387: 382: 378: 374: 373:Micromachines 370: 363: 360: 348: 342: 339: 332: 328: 325: 324: 320: 315: 312: 309: 306: 303: 300: 298: 295: 293: 292:Lead selenide 290: 288: 285: 283: 280: 277: 274: 271: 268: 265: 262: 261: 260: 258: 254: 250: 246: 242: 238: 234: 230: 222: 220: 218: 213: 211: 207: 203: 199: 195: 191: 190:thermal noise 186: 184: 180: 179:spectrometers 176: 172: 168: 167:Thermocouples 164: 160: 155: 153: 149: 145: 141: 137: 129: 125: 120: 110: 107: 99: 88: 85: 81: 78: 74: 71: 67: 64: 60: 57: –  56: 52: 51:Find sources: 45: 41: 35: 34: 29:This article 27: 23: 18: 17: 471:. Springer. 467: 460: 430:(1): 13304. 427: 423: 413: 376: 372: 362: 350:. Retrieved 341: 259:and others. 231:, including 226: 214: 210:p-n junction 206:Photovoltaic 187: 156: 135: 133: 102: 93: 83: 76: 69: 62: 50: 38:Please help 33:verification 30: 202:resistivity 171:thermopiles 501:Categories 379:(5): 703. 333:References 159:Bolometers 66:newspapers 507:Detectors 452:237652629 233:compounds 148:radiation 96:June 2012 405:35630174 321:See also 304:(LiTaO3) 257:selenium 245:antimony 173:use the 144:infrared 140:detector 432:Bibcode 396:9145132 352:15 June 253:cadmium 241:bismuth 80:scholar 483:  450:  403:  393:  316:(PtSi) 278:(InSb) 249:indium 237:alloys 82:  75:  68:  61:  53:  448:S2CID 310:(TGS) 266:(PbS) 161:and 146:(IR) 138:is a 87:JSTOR 73:books 481:ISBN 401:PMID 354:2015 297:QWIP 235:and 181:the 169:and 59:news 473:doi 440:doi 391:PMC 381:doi 239:of 154:). 134:An 126:’s 124:ESO 42:by 503:: 479:. 446:. 438:. 428:17 426:. 422:. 399:. 389:. 377:13 375:. 371:. 255:, 251:, 247:, 243:, 489:. 475:: 454:. 442:: 434:: 407:. 383:: 356:. 130:. 109:) 103:( 98:) 94:( 84:· 77:· 70:· 63:· 36:.

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"Infrared detector"
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scholar
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ESO
Paranal Observatory
detector
infrared
radiation
photodetectors
Bolometers
microbolometers
Thermocouples
thermopiles
thermoelectric effect
spectrometers
pyroelectric detectors
thermal noise
semiconductors
photoconductive
resistivity
Photovoltaic

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