Records |
Author |
Gershenzon, E. M.; Orlov, L. A.; Ptitsina, N. G. |
Title |
Absorption spectra in electron transitions between excited states of impurities in germanium |
Type |
Journal Article |
Year |
1975 |
Publication |
JETP Lett. |
Abbreviated Journal |
JETP Lett. |
Volume |
22 |
Issue |
4 |
Pages |
95-97 |
Keywords |
Ge, impurities, excited states, absorption spectra |
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1773 |
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Author |
Gershenzon, E. M.; Goltsman, G. N.; Ptitsyna, N. G. |
Title |
Investigation of excited donor states in GaAs |
Type |
Journal Article |
Year |
1974 |
Publication |
Sov. Phys. Semicond. |
Abbreviated Journal |
Sov. Phys. Semicond. |
Volume |
7 |
Issue |
10 |
Pages |
1248-1250 |
Keywords |
GaAs, excited donor states |
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Amer Inst Physics 1305 Walt Whitman Rd, Ste 300, Melville, Ny 11747-4501 Usa |
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1733 |
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Author |
Gershenzon, E. M.; Goltsman, G. N.; Orlov, L. |
Title |
Investigation of population and ionization of donor excited states in Ge |
Type |
Conference Article |
Year |
1976 |
Publication |
Physics of Semiconductors |
Abbreviated Journal |
Physics of Semiconductors |
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Issue |
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Pages |
631-634 |
Keywords |
Ge, donor excited states |
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Amsterdam |
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North-Holland Publishing Co. |
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1732 |
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Author |
Gershenzon, E. M.; Gol'tsman, G. N. |
Title |
Transitions of electrons between excited states of donors in germanium |
Type |
Journal Article |
Year |
1971 |
Publication |
JETP Lett. |
Abbreviated Journal |
JETP Lett. |
Volume |
14 |
Issue |
2 |
Pages |
63-65 |
Keywords |
Ge, donors, excited states |
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1740 |
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Author |
Galeazzi, Massimiliano |
Title |
Fundamental noise processes in TES devices |
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Journal Article |
Year |
2011 |
Publication |
IEEE Trans. Appl. Supercond. |
Abbreviated Journal |
IEEE Trans. Appl. Supercond. |
Volume |
21 |
Issue |
3 |
Pages |
267-271 |
Keywords |
TES, Johnson noise, phonon noise, excess noise, flux-flow noise, thermal fluctuation noise |
Abstract |
Microcalorimeters and bolometers are noise-limited devices, therefore, a proper understanding of all noise sources is essential to predict and interpret their performance. In this paper, I review the fundamental noise processes contributing to Transition Edge Sensor (TES) microcalorimeters and bolometers and their effect on device performance. In particular, I will start with a simple, monolithic device model, moving to a more complex one involving discrete components, to finally move to today's more realistic, comprehensive model. In addition to the basic noise contribution (equilibrium Johnson noise and phonon noise), TES are significantly affected by extra noise, which is commonly referred to as excess noise. Different fundamental processes have been proposed and investigated to explain the origin of this excess noise, in particular near equilibrium non-linear Johnson noise, flux-flow noise, and internal thermal fluctuation noise. Experimental evidence shows that all three processes are real and contribute, at different levels, to the TES noise, although different processes become important at different regimes. It is therefore time to discard the term “excess noise” and consider these terms part of the “fundamental noise processes” instead. |
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Recommended by Klapwijk |
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914 |
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