首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 15 毫秒
1.
We have proposed a novel poly-Si/a-Si/HfSiON transistor to enhance reliabilities without performance degradation for a 65-nm-node low standby power (LSTP) application. By insertion of a thin amorphous-Si layer between the Poly-Si gate electrode and HfSiON, both phosphorus penetration from gate electrode and a reaction at gate electrode/HfSiON interface are successfully suppressed, so that positive bias temperature instability, one of the biggest issues for high-k gate dielectric, is drastically improved by two orders of magnitude. By carefully optimizing the gate stack structure of HfSiON, the HfSiON device can satisfy both lower gate leakage and gate-induced drain leakage at the same time. As a result, an excellent Ion- Istandby (= Ig + loff) characteristic can be achieved, compared to the conventional SiON device. The a-Si insertion technique can realize the combination between the high-k gate dielectric and Poly-Si for future LSTP applications.  相似文献   

2.
This paper present, the modeling and estimation of edge direct tunneling current of metal gate (Hf/AlNx) symmetric double gate MOSFET with an intrinsic silicon channel. To model this leakage current, we use the surface potential model obtained from 2D analytical potential model for double gate MOSFET. The surface potential model is used to evaluate the electric field across the insulator layer hence edge direct tunneling current. Further, we have modeled and estimated the edge direct tunneling leakage current for high-k dielectric. In this paper, from our analysis, it is found that dual metal gate (Hf/AlNx) material offer the optimum leakage currents and improve the performance of the device. This feature of the device can be utilized in low power and high performance circuits and systems.  相似文献   

3.
A novel technique to form high-K dielectric of HfSiON by doping base oxide with Hf and nitridation with NH/sub 3/, sequentially, is proposed. The HfSiON gate dielectric demonstrates excellent device performances such as only 10% degradation of saturation drain current and almost 45 times of magnitude reduction in gate leakage compared with conventional SiO/sub 2/ gate at the approximately same equivalent oxide thickness. Additionally, negligible flatband voltage shift is achieved with this technique. Time-dependent dielectric breakdown tests indicate that the lifetime of HfSiON is longer than 10 years at V/sub dd/=2 V.  相似文献   

4.
The carrier conduction and the degradation mechanism in n+gate p-channel metal-insulator-semiconductor field-effect-transistors with HfAlOX (Hf: 60 at.%, Al: 40 at.%)/SiO2 dielectric layers have been investigated using carrier separation method. Since gate current depends on substrate bias and both electron and hole currents are independent of temperature over the range of 25–150 °C, the conduction mechanism for both currents is controlled by a tunneling process. As the interfacial SiO2 layer (IL) thickness increases in a fixed high-k layer thickness (Thigh-k), a dominant carrier in the leakage current changes from hole to electron around 2.2-nm-thick IL. This is due to an asymmetric barrier height for electrons and holes at the SiO2/Si interface. On the contrary, in the case of a fixed IL thickness of 1.3 nm, the hole current is dominant in the leakage current, regardless of Thigh-k. It is shown that the dominant carrier in the leakage current depends on the structure of the high-k stack. Both electron and hole currents for the stress-induced-leakage-current (SILC) state increase slightly relative to the initial currents, which means that the trap generation in the high-k stack occurs near both the conduction band edge of n+poly-Si gate and the valence band edge of Si substrate. The electron current at soft breakdown (SBD) state dramatically increases over that for the SILC state, while the hole currents for both the SILC state and SBD are almost the same. This indicates that the defect sites generated in the high-k stack after SBD are located at energies near the conduction band edge of n+poly-Si gate. Both the defect generation rate and the defect size in the HfAlOX/SiO2 stacks are large compared with those in SiO2. It is inferred that, in high-k dielectric stack, the defect generation mainly occurs in the high-k side rather than the IL side, and the defect size larger than the case of SiO2 could be related to a larger dielectric constant of the high-k layer.  相似文献   

5.
Gate leakage of deep-submicron MOSFET with stack high-k dielectrics as gate insulator is studied by building a model of tunneling current. Validity of the model is checked when it is used for MOSFET with SiO2 and high-k dielectric material as gate dielectrics, respectively, and simulated results exhibit good agreement with experimental data. The model is successfully used for a tri-layer gate-dielectric structure of HfON/HfO2/HfSiON with a U-shape nitrogen profile and a like-Si/SiO2 interface, which is proposed to solve the problems of boron diffusion into channel region and high interface-state density between Si and high-k dielectric. By using the model, the optimum structural parameters of the tri-layer dielectric can be determined. For example, for an equivalent oxide thickness of 2.0 nm, the tri-layer gate-dielectric MOS capacitor with 0.3-nm HfON, 0.5-nm HfO2 and 1.2-nm HfSiON exhibits the lowest gate leakage.  相似文献   

6.
《Microelectronic Engineering》2007,84(9-10):1882-1885
This study investigates the impact of different nitridation processes on hafnium silicon oxynitride (HfSiON) dielectrics. It is demonstrated that the threshold voltage (VT vs. Lg) behavior at short gate lengths is strongly impacted by the nitridation process, depending on the Hf/(Hf+Si) ratio and the HfSiON thickness. A Plasma nitridation in oxidizing ambient results in a modification of the dielectric that can explain the anomalous VT behavior in devices integrated with hafnium-based dielectrics and metal gate. Reduction in anomalous VT behavior and limited gate leakage is achieved by applying a thermal nitridation in a NH3 ambient on Hf-rich silicon oxynitride.  相似文献   

7.
This paper discusses time-dependent dielectric breakdown (TDDB) in n-FETs with HfSiON gate stacks under various stress conditions. It was found that the slope of Weibull distribution of Tbd, Weibull β, changes with stress conditions, namely, DC stress, unipolar AC stress and bipolar AC stresses. On the other hand, the time evolution component of stress-induced leakage current (SILC) was not changed by these stresses. These experimental results indicate that the modulation of electron trapping/de-trapping and hole trapping/de-trapping by stress condition changes the defect size in high-k gate dielectrics. Therefore, the control of injected carrier and the characteristics of trapping can provide the steep Weibull distribution of Tbd, leading to long-term reliability in scaled CMOS devices with high-k gate stacks.  相似文献   

8.
李永亮  徐秋霞 《半导体学报》2010,31(11):116001-4
提出了一种在HfSiON介质上,采用非晶硅为硬掩膜的选择性去除TaN的湿法腐蚀工艺。由于SC1(NH4OH:H2O2:H2O)对金属栅具有合适的腐蚀速率且对硬掩膜和高K材料的选择比很高,所以选择它作为TaN的腐蚀溶液。与光刻胶掩膜和TEOS硬掩膜相比,因非晶硅硬掩膜不受SC1溶液的影响且很容易用NH4OH溶液去除(NH4OH溶液对TaN和HfSiON薄膜无损伤),所以对于在HfSiON介质上实现TaN的选择性去除来说非晶硅硬掩膜是更好的选择。另外,在TaN金属栅湿法腐蚀和硬掩膜去除后, 高K介质的表面是光滑的,这可防止器件性能退化。因此,采用非晶硅为硬掩膜的TaN湿法腐蚀工艺可以应用于双金属栅集成,实现先淀积的TaN金属栅的选择性去除。  相似文献   

9.
A positive bias temperature instability (PBTI) recovery transient technique is presented to investigate trap properties in HfSiON as high-k gate dielectric in nMOSFETs. Both large- and small-area nMOSFETs are characterized. In a large-area device, the post-PBTI drain current exhibits a recovery transient and follows logarithmic time dependence. In a small-area device, individual trapped electron emission from HfSiON gate dielectric, which is manifested by a staircase-like drain current evolution with time, is observed during recovery. By measuring the temperature and gate voltage dependence of trapped electron emission times, the physical mechanism for PBTI recovery is developed. An analytical model based on thermally assisted tunneling can successfully reproduce measured transient characteristics. In addition, HfSiON trap properties, such as trap density and activation energy, are characterized by this method.  相似文献   

10.
介绍了一种纳米MOSFET(场效应管)栅电流的统一模型,该模型基于Schrodinger-Poisson方程自洽全量子数值解,特别适用于高k栅介质和多层高k栅介质纳米MOSFET.运用该方法计算了各种结构和材料高k介质的MOSFET栅极电流,并对pMOSFET和nMOSFET高k栅结构进行了分析比较.模拟得出栅极电流与实验结果符合,而得出的优化氮含量有待实验证实.  相似文献   

11.
Electrical behavior of high-k HfxTiySizO layers with different Hf:Ti ratios in the film have been investigated. The films are prepared by MOCVD using novel single-source precursors chemistry. Oxide and interface charges, leakage currents and conduction mechanisms are found to be a strong function of the film composition. The films with lower Hf content show lower level of oxide and interface charges and higher dielectric constant whereas those with higher Hf content have better leakage current properties. It is established that in the films with lower Hf content the conduction is governed by a phonon-assisted process. The change of the conduction mechanism from Poole–Frenkel emission to phonon-assisted tunneling is assigned to possible structural changes which take place when changing the composition of the films.  相似文献   

12.
介绍了一种纳米MOSFET(场效应管)栅电流的统一模型,该模型基于Schrodinger-Poisson方程自洽全量子数值解,特别适用于高k栅介质和多层高k栅介质纳米MOSFET.运用该方法计算了各种结构和材料高k介质的MOSFET栅极电流,并对pMOSFET和nMOSFET高k栅结构进行了分析比较.模拟得出栅极电流与实验结果符合,而得出的优化氮含量有待实验证实.  相似文献   

13.
Drain current degradation in HfSiON gate dielectric nMOSFETs by positive gate bias and temperature stress is investigated by using a fast transient measurement technique. The degradation exhibits two stages, featuring a different degradation rate and stress temperature dependence. The first-stage degradation is attributed to the charging of preexisting high-k dielectric traps and has a log(t) dependence on stress time, whereas the second-stage degradation is mainly caused by new high-k trap creation. The high-k trap growth rate is characterized by two techniques, namely 1) a recovery transient technique and 2) a charge-pumping technique. Finally, the effect of processing on high-k trap growth is evaluated.  相似文献   

14.
先进的Hf基高k栅介质研究进展   总被引:1,自引:0,他引:1       下载免费PDF全文
许高博  徐秋霞   《电子器件》2007,30(4):1194-1199
随着CMOS器件特征尺寸的不断缩小,SiO2作为栅介质材料已不能满足集成电路技术高速发展的需求,利用高k栅介质取代SiO2栅介质成为微电子技术发展的必然.但是,被认为最有希望替代SiO2的HfO2由于结晶温度低等缺点,很难集成于现有的CMOS工艺中,新型Hf基高k栅介质的研究成为当务之急.据报道,在HfO2中引入N、Si、Al和Ta可大大改善其热力学稳定性,由此形成的高k栅介质具有优良的电学特性,基本上满足器件的要求.本文综述了这类先进的Hf基高k栅介质材料的最新研究进展.  相似文献   

15.
HfO2/TaON叠层栅介质Ge MOS器件制备及电性能研究   总被引:1,自引:0,他引:1  
为提高高k/Ge MOS器件的界面质量,减小等效氧化物厚度(EOT),在high-k介质和Ge表面引入薄的TaON界面层.相对于没有界面层的样品,HfO2/TaON叠层栅介质MOSFET表现出低的界面态密度、低的栅极漏电和较好的输出特性.因此利用TaON作为Ge MOS器件的界面钝化层对于获得小的等效氧化物厚度和高的高k/Ge界面质量有着重要的意义.  相似文献   

16.
This paper conducts a comprehensive evaluation of the electrical characteristics of the poly-silicon gated n-channel metal-oxide-semiconductor field-effect-transistor (nMOSFET) with hafnium-aluminum-oxynitride (HfAlON) gate dielectric with interfacial ultraviolet-ozone (UV-O3) oxide or chemical oxide. Interfacial UV-O3 oxide exhibits well-controlled interfacial properties due to self-saturated growth and thick-oxide-comparable density, which is beneficial to suppress interfacial re-oxidation and reduces surface roughness. Compared with interfacial chemical oxide, the interfacial UV-O3 oxide obviously improves both gate insulating and interface characteristics, including breakdown voltage increments, reduced gate leakage current, and as-deposited traps. In addition, the HfAlON gate stack with UV-O3 interface oxide also shows encouraging nMOSFET device performances, with a small subthreshold swing, high electron mobility, saturation drain current, and negligible stress-induced trap generation. The results clearly suggest that the high-density interfacial UV-O3 oxide possess a high potential to be integrated with further high-k dielectric applications.  相似文献   

17.
Fin Field Effect Transistors (FinFETs) are used for Complementary Metal Oxide Semiconductor applications beyond the 45?nm node of the Semiconductor Industry Association (SIA) roadmap because of their excellent scalability and better immunity to short channel effects. This article examines the impact of high-k dielectrics on FinFETs. The FinFET device performance is analysed for On Current, Off Current, I on/I off ratio, drain induced barrier lowering, electrostatic potential along the channel, electric field along the channel, transconductance, output resistance, intrinsic gain, gate capacitance and transconductance generation factor, by replacing the conventional silicon dioxide gate dielectric material, with various high dielectric constant materials. Nanosize ZrO2 (zirconium-di-oxide) is found out to be the best alternative for SiO2 (silicon-di-oxide). It is also observed that the integration of high-k dielectrics in the devices significantly reduces the short channel effects and leakage current. The suitability of nanoscale FinFETs is observed with the help of an inverter circuit and their gain values are calculated for circuit applications.  相似文献   

18.
随着45 nm和32 nm技术节点的来临,传统的SiO2作为栅介质薄膜材料的厚度需缩小到1 nm之下,材料的绝缘性、可靠性等受到了极大的挑战,已不能满足技术发展的要求.高k材料成为代替SiO2作为栅介质薄层材料的不错选择,但是大多数高k材料是离子金属氧化物,其基本物理和材料特性导致产生很多不可靠因素.从高k材料的基本物理和材料特性角度,回顾了高k材料代替SiO2用作纳米级MOS晶体管栅介质薄层时产生的主要不可靠因素及根本原因.  相似文献   

19.
The appropriate wet etch process for the selective removal of TaN on the HfSiON dielectric with an amorphous-silicon(a-Si) hardmask is presented.SCI(NH_4OH:H_2O_2:H_2O),which can achieve reasonable etch rates for metal gates and very high selectivity to high-k dielectrics and hardmask materials,is chosen as the TaN etchant. Compared with the photoresist mask and the tetraethyl orthosilicate(TEOS) hardmask,the a-Si hardmask is a better choice to achieve selective removal of TaN on the HfSiON dielectric be...  相似文献   

20.
Accurate measurements and degradation mechanisms of the channel mobility for MOSFETs with HfO/sub 2/ as the gate dielectric have been systematically studied in this paper. The error in mobility extraction caused by a high density of interface traps for a MOSFET with high-k gate dielectric has been analyzed, and a new method to correct this error has been proposed. Other sources of error in mobility extraction, including channel resistance, gate leakage current, and contact resistance for a MOSFET with ultrathin high-k dielectric have also been investigated and reported in this paper. Based on the accurately measured channel mobility, we have analyzed the degradation mechanisms of channel mobility for a MOSFET with HfO/sub 2/ as the gate dielectric. The mobility degradation due to Coulomb scattering arising from interface trapped charges, and that due to remote soft optical phonon scattering are discussed.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号