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1.
We investigate the size distribution of electron-hole drops collected in an illuminated p-n junction. The observed size distribution are of complex nature with several pronounced peaks revealing drop sizes of about 108 electron-hole pairs (drop radius R ? 5 μm). An observed suppression of drop formation at low temperatures indicate that supersaturation effect are present.  相似文献   

2.
The delay effect of electron-hole drop nucleation caused by the presence of free carriers (electrons and holes) has been discovered in Ge. The phenomenon is discussed in the model of non-isothermal nucleation.  相似文献   

3.
The photocurrent power spectra were measured in a Ge photodiode as a function of the incident optical intensity at 1.8 K and 4.3 K. The observed spectra showed a peak at low frequencies superimposed on a continuum which has a cut-off at high frequency. The interpretation of the results implies that the electron-hole drops coming from a same region of the photoexcited liquid are ejected periodically.  相似文献   

4.
The far-infrared attenuation spectrum due to a large electron-hole drop in inhomogeneously stressed Ge has been measured and compared to the attenuation by small drops in unstressed Ge. The spectrum is analyzed using the full Mie theory for the absorption due to a large sphere; the experimental results are interpreted as bulk plasma absorption in a drop with pair density considerably lowered by the strain.  相似文献   

5.
The temperature dependence of the radius of electron-hole drops in Ge is determined from measurements of the number of particles in the drops using the p-n junction technique. The drop radius is found to increase from 5.5μ at 1.7 K to 10μ at 3.2 K for an excitation intensity of 160 mWatt/mm2. As a function of excitation level at 1.8 K the drop radius is found to increase from 2.9μ at 8 mWatt/mm2 to 6.5μ at 300 mWatt/mm2. Our data are compared to results available in this field.  相似文献   

6.
The effect of magnetic fields on the motion of electron-hole drops in germanium is studied. A non-uniform strain is used to provide a known and controllable driving force for drop motion in the sample plane. Contrary to the results of earlier experiments in which drop motion was normal to the sample plane, the results are consistent with conventional models of drop-phenomenon interaction and weak magnetic fields have no observable effects on this motion.  相似文献   

7.
A treatment is given of the Mott transition of a gas of excitons in equilibrium with electron-hole droplets in Ge. We find that transition occurs near 4K. We can come to no firm conclusion whether the Mott transition is a first-order transition separate from the liquid-gas transition, as has been suggested.  相似文献   

8.
Measurements of the luminescence time decay of electron-hole drops (EHD) in Ge are interpreted by taking into account the EHD volume recombination and the evaporation of free excitons (FE) at the EHD surface. From this study we get the EHD binding energy at T = 0 which is φ(0) = 15 ± 2 K. This result is consistent with the spectroscopic value of φ(0) if one takes into account the exchange splitting of FE.  相似文献   

9.
At the large microwave power level, we have observed a sharp increase of the m.w. absorption in magnetic field and an appearance of steps in the m.w. absorption kinetics. These steps are connected with the intense evaporation of drops caused by the m.w. field, which provides the existence of the dense cloud of free carriers surrounding the drop. The density of the cloud has been found to depend strongly on magnetic field.  相似文献   

10.
We report measurements of the luminescence of free exitons and electron-hole droplets in Ge. Agreement between lineshape theory and experiment is obtained; no extraneous broadening of the free exciton is observed. We find the condensation energy of electron-hole drops to be 2.06 ± 0.15 meV; theexcitongroundstatesplittingtobe 0.7 meV and the electron-hole density in the droplet phase, including temperature dependence, to be n(T) = 2.38 × 1017 (1-0.01T2) cm?3.  相似文献   

11.
We show that microwave photoconductivity measurements of optically excited carriers in Ge at 1.6°K can be used to determine the importance of nonradiative recombination within electron-hole liquid drops. Our results show that the nonradiative lifetime is 80 μsec from which we calculate a radiative efficiency of 0.5 ± 0.1 for the condensed phase.  相似文献   

12.
The self-consistent formulation of density functional theory is used to calculate the single-particle properties of electron-hole droplets in Ge with between 10 and 120 pairs. Results are presented for the recombination luminescence lineshape, the electron and hole density profiles and the work function. As in the physics of the nucleus there are strong effects associated with the filling of the various electron and hole shells. In particular, the luminescence line narrows and oscillates as N decreases for a drop with less than 120 pairs. If N = 70 the width is 70% of the bulk value; while for N = 50 it is 80%. The density profiles and work functions for different N are rather varied and show very strong shell effects.  相似文献   

13.
The radius of electron-hole drops at nucleation threshold is investigated as a function of temperature in Si using a small shift of their main luminescence line due to their surface energy. For T > 10 K, experiment and theory are consistent if we take into account a sticking coefficient (~ 4%) at the drop surface. For T ? 10 K our data indicate that the drop size is certainly small, but the measured radii are not likely. This suggests that other effects should be considered, such as the drop curvature energy for example.  相似文献   

14.
Diffusion of excitons and electron-hole drops is investigated in pure germanium, using a time-resolved cyclotron resonance method. The diffusion coefficient of excitons at 4.2 K is obtained to be ≈ 1000 cm2/sec. For electron-hole drops, when excitation is not so high, it is expected to be lower than ≈ 500 cm2/sec at 1.6 K.  相似文献   

15.
Using a single photon counting technique we were able to measure with very high time resolution the rise and decay times of the luminescence of free excitons and electron hole drops in Si. It was found that the formation and decay of droplets can be described by kinetic equations. The experimental data concerning the time behavior of the free excitons cannot be described by analogous simple kinetic equations. Therefore it is concluded that droplets are formed directly from a dense plasma rather than from a free exciton gas.  相似文献   

16.
Summary The existence of the parity-breaking phase transition between untwisted and twisted bipolar structures of the tangentially anchored spherical nematic drops has been shown experimentally. Twisted structures behave like the optically active objects in spite of the nonactivity of nematic and isotropic matrix themselves. Temperature dependences of the order parameter (twist angle) have been determined for the drops of 8 CB and 8 OCB. It has been shown that these dependences are very similar to that observed in usual second-order phase transition. Work presented at the second USSR-Italy Bilateral Meeting on Liquid Crystals held in Moscow, September 15–21, 1988.  相似文献   

17.
Under steady-state conditions, we have observed an increase of photo-conductivity in Ge at low temperature simultaneously with radiation from electron-hole drops. A set of rate equations for a 3-phase system of carriers, free excitons and drops are used to interpret the results. Values of the exciton-recombination coefficient and the lifetimes of the three phases are determined.  相似文献   

18.
We consider the Kroemer experiments on explosive instabilities in EHD in Ge in the light of an extension of the Altukhov theory to encompass general values of ωτ and of the ratio of drop radius to rf penetration depth. We suggest that the drops were heated above their critical temperature, but by a monotonic path.  相似文献   

19.
The giant fluctuating photocurrent has been observed in highly excited germanium samples with ohmic contacts at 1.6 K. From the observation of this fluctuating photocurrent spike with varying static electric field, it is found that the electron-hole drop is negatively charge as a whole.  相似文献   

20.
The observation of an isoelectronic impurity induced radiative no-phonon transition from electron-hole drops in strongly excited N-doped GaP is reported. The binding energy and carrier density within the drops are compared with theoretical values.  相似文献   

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