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1.
The first observation of cyclotron resonance in n-type GaP is reported. The electrons were thermally excited at a temperature of 100 K and the resonance was observed at submillimetre wavelengths (337 μm) using a pulsed magnetic field of 0–300 kG. From experiments with B∥〈100〉, 〈110〉 and 〈111〉 it was found that the transverse effective mass for electrons is m1 = 0.25 ± 0.01 m0 and that the anisotropy factor for the conduction band ellipsoids is K = 20+10-6.  相似文献   

2.
The first observation of cyclotron resonance in p-type InP is reported. The holes were thermally excited at 110 K and the resonance was observed at 337μm wavelength (HCN laser) using a pulsed magnetic field of 0–350 kG. The effective masses of the light and heavy holes in the 〈111〉 direction were found to be m1L = 0.12 ± 0.01 m0, m1H = 0.60 ± 0.02 m0 and in the 〈100〉 direction m1L = 0.12 ± 0.01 m0, m1H = 0.56 ± 0.02 m0. We obtain an estimate of the Dresselhaus parameters A = ?5.04, |B| = 3.12, C2 = 6.57. We also report the effective masses for p-type GaP in the 〈111〉 direction as m1L = 0.18 ± 0.02 m0, m1H = 0.56 ± 0.04 m0.  相似文献   

3.
Reflectance spectra were measured on ZnTe in magnetic fields up to 18 T for B ? [100] and B ? [110]. The experiments yield renormalized valence band parameters γ12 = 0.83 ± 0.08 and γ13 = 1.30 ± 0.12, corresponding to bare parameters γ2 = 0.95 ± 0.09 and γ3 = 1.48 ± 0.14. From the free exciton Rydberg energy R10 = 12.8 meV we derive a reduced exciton polaron mass m0 0.080 ± 0.005 and a bare reduced mass m0 0.074 ± 0.005, corresponding to γ11 = 3.9 ± 0.7 and γ1 = 4.4 ± 0.7 for an electron effective polaron mass m1e = 0.116 m0. We further calculate the exciton diamagnetic shift rate according to existing low-field theories modified by a variational calculation taking into account polaron effects and valid up to γ ? 1. The difference between experiment and theory is 10% and the agreement is considered satisfactory.  相似文献   

4.
Cyclotron resonance of electron and holes have been optically detected at 70 GHz and at 1.8 K in n-type CdTe. The bare effective masses, in unit of the free electron mass, are found to be: m1 = 0.088 ± 0.004, m1lh = 0.12 ± 0.01, m1 = 0.60 ± for H // <100>, and m1e = 0.089 0.004, m1lh = 0.11 ± 0.01, m1hh = 0.69 ± 0.02 for H // <111>. The Luttinger valence band parameters deduced from these measurements are: γ1 = 5.3 ± 0.5, γ2 = 1.7 ± 0.3 and γ3 = 2.0 ± 0.3, in fair agreement with the calculations of Lawaetz.  相似文献   

5.
The cyclotron resonance of inversion-layer electrons on (100)p-type Si is found to depend sensitively on an externally applied compressive stress. At low temperatures (T ? 10 K) we observe a considerable increase of the cyclotron mass m1c with stress S along the [001] direction. The effect is most strongly observed at low electron densities ns. For S~1.5 × 109dynecm2 and ns~2 × 1011cm-2 we obtain m1c~0.4 m0 instead of the expected 0.2m0. Along with this change of m1c a strong narrowing of the resonance is noted. Raising the temperature gives an additional ns- dependent increase of m1c.  相似文献   

6.
Luminescence decay of isolated donor-acceptor pairs has been measured over the range of pair distance R ~ 180 Å in phosphorous-doped ZnTe. Analysis of the recombination rate as a function of the pair distance suggests an asymptotic behaviour of the acceptor envelope function of the type exp(-r/aA), with aA = 40 ± 10 A?. This effective Bohr radius would correspond to an hydrogenic mass m1 = (0.13 ± 0.03)mo, which is close to the light hole mass as measured from cyclotron resonance experiments, m1 = (0.154 ± 0.005)mo. A discussion on the validity of the isolated donor-acceptor pair model is also given.  相似文献   

7.
Infrared cyclotron resonance was observed in n-type InSb, GaAs and Ge in very high magnetic fields up to 1.3 MOe at room temperature using a CO2 laser. A large shift of the cyclotron mass due to the non-parabolicity of the energy band was found in each material. The band edge masses of electrons at room temperature were evaluated to be m1 = 0.0127 m for InSb, m1 = 0.065m for GaAs and m1t= 0.086m for Ge. The linewidth was measured in GaAs and Ge in the high fields.  相似文献   

8.
The first observation of cyclotron resonance of holes in AgBr is reported. Measurements have been made at 34 GHz and 1.7 K. It is shown that the energy surfaces for the hole polaron consist of a set of spheroids oriented along the [111] directions with the mass parameters m1l= (1.71±0.06)m0 and m1t=(0.79±0.01)m0. The mobility of the hole polaron is determined to be about 1.5 × 105cm2Vsec at 1.7 K.  相似文献   

9.
The interaction of electrons and polar-optical phonons is investigated for CdTe and InP in cylotron resonance (CR) emission and absorption experiments. Under hot electron conditions three different Landau level transitions are observed. From the positions of the fundamental transition and the CR line splittings the nonparabolicity and the polaron contribution to the effective mass are analysed using a variational approach for the polaron shifts. The bare band edge masses and the polaron coupling constants are determined to be m10=0.0900±0.0005, α=0.35+-0.03 for CdTe and m10=0.0765±0.0005, α=0.15±0.01 for InP.  相似文献   

10.
A millimeter-wave spectrometer having a sensitivity of 4 × 10?10 cm?1 in the 2-mm region has been constructed for observation of extremely weak millimeter-wave spectra of gases. It has been used to measure JJ, K = 0 ← 3 transitions in PH3 and JJ, K = 0 ← 3 as well as K = ±1 ← ±4 transitions in PD3. The B0 and C0 spectral constants (in MHz) are: for PH3, B0 = 133 480.15 ± 0.12 and C0 = 117 488.85 ± 0.16; for PD3, B0 = 69 471.10 ± 0.03 and C0 = 58 974.37 ± 0.05. The effective ground-state values obtained for the bond angle and bond length are: for PH3, r0 (A?) = 1.4200 and α0(o) = 93.345; for PD3, r0 (A?) = 1.4176 and α0(o) = 93.359. The corresponding zero-point-average values were calculated to be: for PH3, rz (A?) = 1.42699 ± 0.0002 and αz(o) = 93.2287; for PD3, rz (A?) = 1.42265 ± 0.0001 and αz(o) = 93.2567 ± 0.004. For both species, the equilibrium values are re (A?) = 1.41159 ± 0.0006 and αe(o) = 93.328 ± 0.02.  相似文献   

11.
We have studied magnetophonon resonances of the two-dimensional (2D) electron gas at the GaAs/AlGaAs interface in a single interface heterostructure and a superlattice. In magnetic fields up to 30T, one set of oscillations is observed, corresponding to the coupling of 2D electrons with LO phonons of GaAs. The effective mass obtained directly from the magnetic field position of the fundamental resonance, where the Landau splitting equals the bulk phonon energy, and of the next two harmonics is m1 = (0.071 ± 0.0015)m0. A comparison with cyclotron resonance measurements on the same system and with bulk GaAs data gives an upper limit of about 2% for the mass corrections due to polaron effects and due to the confinement of the electron gas.  相似文献   

12.
The electronic properties of single crystals of monoclinic SrAs3 have been studied by investigating the temperature dependence of electrical conductivity, Hall effect and Shubnikov de Haas (SdH) oscillations. At 4.2 K, SrAs3 is predominantly p-conducting with a typical hole concentration of 6 × 1017cm-3. The Hall coefficient changes its sign near 80 K. The angular dependence of the SdH oscillations was used to map out the shape of the Fermi-surface of holes. Two asymmetric, quasi-ellipsoidal Fermi-bodies are located in the first Brillouin zone. The cyclotron effective masses m1 for two crystallographic directions were calculated from the temperature dependence of the amplitude of the oscillations: m1(B6a)=(0.70± 0.002)m0and m1(B6c1)=(0.095±0.003)m0, respectively. There are indications for a third Fermi-surface which is attributed to electrons.  相似文献   

13.
The vibration-rotation transitions for v = 1 ← 0 of NO (2Π12) have been studied by using the technique of laser magnetic resonance spectroscopy. Five magnetic resonance lines are observed with three CO laser lines in the range from 1859 to 1886 cm?1. From these, three zero-field transition frequencies, v = 1 ← 0; R(32), P(72), and P(92) are obtained with an accuracy of ±0.0007 cm?1. The molecular constants which have been determined by borrowing centrifugal constants from a previous infrared work are B021 = 1.72004 ± 0.00006 cm?1, B121 = 1.70212 ± 0.00010 cm?1, and G(v = 1) ? G(v = 0) (for 2Π12) = 1875.8470 ± 0.0007 cm?1.  相似文献   

14.
The 276-nm absorption band system (1B21A1) of m-dichlorobenzene was photographed under high resolution. The electronic origin band (0, 0) and a band at (0 + 380) cm?1 were subjected to rotational “band contour” analysis. As a result, it is found that the origin band has a type A band contour and that at (0 + 380) cm?1 exhibits a type B band contour. The band contour analysis also yields an accurate determination of the excited state parameters, viz., A′ = 0.0911 ± 0.0003, B′ = 0.02852 ± 0.00005, and C′ = 0.02175 ± 0.00001 cm?1. A model geometry for the molecule m-DCB in its first excited singlet state has been proposed.  相似文献   

15.
For the S = 12 XY model at T = 0 four susceptibilities have been calculated exactly on a sequence of finite square lattices and extrapolated to the infinite square lattice. For the ferromagnet χzz = 0 while χxxN2.9; for the antiferromagnet JχxxN(gμB)2 = 0.025 ± 0.002 and JχxxN(gμB)2 = 0.13 ± 0.03.  相似文献   

16.
The J = 2?1 microwave spectrum of six isotopic species of HSiF3 has been observed and assigned in excited states of five of the six fundamental vibrations. The assignment is based on relative intensities, double resonance experiments, and trial anharmonic force constant calculations. Analysis of the spectra leads to experimental values for five of the αrB constants, all three l-doubling constants qt, one Fermi resonance constant φ233, and one zeta constant ζ6, 6(z).The harmonic force field has been refined to all the available data on vibration wavenumbers, centrifugal distortion constants, and zeta constants. The cubic anharmonic force field has been refined to the data on αrB and qt constants, using two models: a valence force model with two cubic force constants for SiH and SiF stretching, and a more sophisticated model. With the help of these calculations, the following equilibrium structure has been determined: re(SiH) = 1.4468(±5) A?, re(SiF) = 1.5624(±1) A?, ∠HSiF = 110.64(±3)°,  相似文献   

17.
The Raman active fundamentals ν1(A1g), ν2(Eg), ν5(F2g), and the overtone 2ν6 of SF6 have been investigated with a higher resolution and the band origins were estimated to be: ν1 = 774.53 cm?1, ν2 = 643.35 cm?1, ν5 = 523.5 cm?1, and 2ν6 = 693.8 cm?1. Raman and infrared data have been combined for estimation of several anharmonicity constants. The ν6 fundamental frequency is calculated as 347.0 cm?1. From the analysis of the ν2 Raman band, the following rotational constants of both the ground and upper states have been calculated:
B0 = 0.09111 ± 0.00005cm?1; D0 = (0.16±0.08)10?7cm?1
;
B2 = 0.09116 ± 0.00005cm?1; D2 = (0.18±0.04)10?7cm?1
.  相似文献   

18.
The microwave and photoelectron spectra of isocyanato ethene CH2CHNCO have been studied. The microwave results indicate that the species is planar and possesses both a cis and a trans form. The appearance of dense and complicated vibrational satellite lines indicates that the molecule is quite flexible, a general property of molecules containing the isocyanate group. The rotational constants are:
cis: A0 = 20 146.8, B0 = 3107.267, C0 = 2689.513 MHz; trans: A0 = 62 584.051, B0 = 2437.730, C0 = 2346.507 MHz
These constants are shown to be consistent with structures in which r(CN) = 1.382 ± 0.005 A?, ∠(CCN) = 122 ± 1° (for both conformers), and ∠(CNC) = 142.4 ± 0.5° (cis) and 138.4 ± 1.5° (trans). The dipole moments are μ(cis) = 2.120 ± 0.015 and μ(trans) = 2.207 ± 0.007 D. Several distinct peaks are observed in the photoelectron spectrum; however, the structure is not resolved into features belonging to the different isomers. The first ionization potential lies at 9.80 ± 0.1 eV. The spectrum has been assigned with the aid of theoretical calculations.  相似文献   

19.
R.L. Thews 《Nuclear Physics B》1977,129(1):135-141
The constraints of duality via FESR's are applied to the processes P+P→P+V, using particles with a new quantum number (charm) as both external and internal (resonance saturation) states. The results are independent of any detailed dynamics or symmetry schemes, as well as independent of coupling strengths. We use the masses of the recently-discovered D and D1 to set the scale. We predict mD7 = 2372 ± 39 MeV, mF = 1938 ± 33 MeV, mF7 = 2500 ± 40 MeV. Thus slopes of Regge trajectories for charmed mesons are predicted to be substantially smaller than those for ordinary mesons.  相似文献   

20.
The disagreement of Danyluk and King's (Chem. Phys.25, 343 (1977)) rotational constants for levels lying near the dissociation limit of B-state I2 with the mechanical behavior predicted by near-dissociation theory is investigated. The discrepancies are shown to be much too large to be explained by either the neglect of centrifugal distortion effects in the original analysis or by rotational or spin-rotation coupling to a nearby repulsive 1u state. These differences are therefore attributed to experimental error, a conclusion which is confirmed by more recent experimental results. A reanalysis of the best available data for levels near the dissociation limit of B-state I2 then yields improved values for the B-state dissociation limit D = 20 043.16 (±0.02) cm?1 of the vibrational index at dissociation vD = 87.32 (±0.04) and of the long-range potential constant C5 = 2.88 (±0.03) × 105cm?1A?5. This in turn implies a slightly improved ground-state dissociation energy of D0 = 12 440.18 (±0.02) cm?1.  相似文献   

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